PROTAC

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  1. PROTAC Linker

    Mal-PEG5-acid is a polyethylene glycol (PEG)-based linker designed for use in the synthesis of PROTAC (proteolysis-targeting chimera) molecules. This compound facilitates the assembly of bifunctional ligands that can recruit E3 ligases to target proteins for ubiquitination and subsequent degradation. Its utility in the development of PROTACs makes it a valuable tool for researchers studying targeted protein degradation and related therapeutic applications.
  2. PROTAC Linker

    Propargyl-PEG8-OH is a PEG-based PROTAC linker that facilitates the synthesis of proteolysis-targeting chimeras (PROTACs). This compound features an alkyne group, allowing it to serve as a click chemistry reagent through copper-catalyzed azide-alkyne cycloaddition (CuAAc) with azide-containing molecules. Its application in PROTAC development enables targeted protein degradation, making it a valuable tool for researchers focused on selective modulation of protein levels and pathways.
  3. PROTAC Linker

    Mal-C2-cyclohexylcarboxyl-hydrazide hydrochloride is a versatile PROTAC linker designed for targeted protein degradation applications. This hydrazide compound facilitates the formation of bifunctional molecules, promoting the effective assembly of E3 ligases and target proteins. It serves as a key building block in the development of novel PROTACs for studying protein dynamics and therapeutic interventions in various diseases.
  4. PROTAC Linker

    m-PEG2-O-Ph-3-NH2 is a PEG-based linker designed for use in the synthesis of PROTACs (proteolysis-targeting chimeras). This compound facilitates the connection between target proteins and E3 ligases, enabling targeted protein degradation, which is crucial for studying protein function and disease mechanisms. Its application in the development of PROTACs enhances the ability to manipulate cellular pathways and offers potential therapeutic strategies in various diseases, including cancer.
  5. PROTAC Linker

    m-PEG2-O-Ph-NH2 is a polyethylene glycol (PEG)-based linker specifically designed for use in the synthesis of PROTAC (proteolysis-targeting chimera) molecules. This compound enhances solubility and stability, facilitating the effective coupling of target ligands and E3 ligase recruiters. Its application extends to the development of targeted protein degradation strategies in chemical biology and drug discovery research.
  6. PROTAC Linker

    N-(Azido-PEG4)-biocytin serves as a PEG-based linker for PROTAC applications, facilitating targeted protein degradation through its unique chemical reactivity. This reagent incorporates an azide group, allowing it to participate in copper-catalyzed azide-alkyne cycloaddition (CuAAC) with alkyne-containing molecules and strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with DBCO or BCN functionalized compounds. Its versatility makes it a valuable tool in chemical biology for the synthesis of PROTACs and other bioconjugates.
  7. PROTAC Linker

    Methylamino-PEG1-Boc is a polyethylene glycol (PEG)-based linker designed for use in proteolysis-targeting chimera (PROTAC) synthesis. The compound enables the formation of stable PROTACs by facilitating the conjugation of target proteins to E3 ligases, thereby promoting targeted protein degradation. It is particularly valuable in the development of novel therapeutic agents aimed at various diseases through the modulation of protein levels in cellular systems.
  8. PROTAC Linker

    Fluorescein-PEG6-bis-NHS ester is a polyethylene glycol (PEG)-derived linker designed for use in the synthesis of PROTACs (proteolysis-targeting chimeras). This compound features a fluorescein moiety that facilitates fluorescence detection, making it valuable for monitoring the effectiveness of protein degradation in cellular assays. Its efficient conjugation properties enable the construction of novel PROTACs, promoting targeted protein degradation in various biological research applications.
  9. PROTAC Linkers

    Biotin-PEG6-alcohol is a biotin-conjugated polyethylene glycol (PEG) linker designed for use in the development of PROTAC (Proteolysis Targeting Chimera) compounds. This linker facilitates the connection of a target protein ligand with an E3 ligase ligand, enabling the targeted degradation of proteins within cells. Its key role in PROTAC synthesis makes it valuable for researchers investigating protein regulation and degradation pathways in various biological contexts.
  10. PROTAC Linker

    Hydroxy-PEG8-Boc is a polyethylene glycol (PEG)-based linker designed for use in the synthesis of PROTACs (Proteolysis Targeting Chimeras). This compound facilitates the conjugation of target proteins, enhancing the efficiency and selectivity of protein degradation processes. It is an essential building block for the development of novel therapeutic agents aimed at selective targeting of pathological proteins in various disease models.
  11. PROTAC Linker

    Azido-PEG2-propargyl is a PEG-based PROTAC linker that facilitates the construction of PROTAC molecules. This compound features an azide functional group, enabling it to participate in copper-catalyzed azide-alkyne cycloaddition (CuAAc) reactions with alkyne-containing partners. Additionally, it is capable of undergoing strain-promoted alkyne-azide cycloaddition (SPAAC) with DBCO or BCN-modified compounds. Azido-PEG2-propargyl is essential for researchers aiming to develop targeted protein degradation systems.
  12. PROTAC linker

    N-(Azido-PEG3)-N-Boc-PEG4-Boc is a PEG-based linker designed for use in the synthesis of PROTACs. This compound features an azide functional group that enables its participation in copper-catalyzed azide-alkyne cycloaddition (CuAAc) reactions, as well as strain-promoted alkyne-azide cycloaddition (SPAAC) with reactants containing DBCO or BCN moieties. Its biocompatibility and versatility make it ideal for constructing targeted protein degradation systems in chemical biology research.
  13. PROTAC Linker

    N-(Azido-PEG4)-N-bis(PEG4-acid) is a PEG-based linker for PROTAC (proteolysis-targeting chimeras) synthesis. This compound features an azide group that enables click chemistry, participating in copper-catalyzed azide-alkyne cycloaddition (CuAAc) with alkynyl-containing molecules. Additionally, it can engage in strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with DBCO or BCN groups, making it a versatile tool for bioconjugation and targeted protein degradation applications in chemical biology research.
  14. PROTAC Linker

    Azido-PEG10-alcohol is a PEG-based linker designed for use in the synthesis of PROTACs (Proteolysis Targeting Chimeras). This compound features an azide functional group, enabling it to participate in copper-catalyzed azide-alkyne cycloaddition (CuAAc) reactions with alkyne-containing molecules. Additionally, it can facilitate strain-promoted alkyne-azide cycloaddition (SPAAC) reactions when interacting with DBCO or BCN groups. Its versatile reactivity makes it a valuable tool for developing targeted protein degradation strategies in chemical biology research.
  15. PROTAC Linker

    Cbz-PEG2-bromide is a PEG-based linker designed for use in the synthesis of PROTACs (Proteolysis-Targeting Chimeras). This compound facilitates targeted protein degradation by covalently linking E3 ligases and the protein of interest, thereby promoting the ubiquitination and subsequent proteasomal degradation of specific proteins. It is a valuable tool in drug discovery and chemical biology for the development of new therapeutics targeting challenging proteins.
  16. PROTAC Linkers

    Bromoacetyl-PEG3-DBCO is a PEG-based linker designed for PROTAC (Proteolysis Targeting Chimera) synthesis. This compound features a dibenzylcyclooctyne (DBCO) group that enables efficient strain-promoted alkyne-azide cycloaddition (SPAAC) with azide-containing molecules. It plays a critical role in the development of targeted protein degradation strategies, facilitating the formation of highly functionalized PROTACs for various biological research applications.
  17. PROTAC Linker

    Azido-PEG9-alcohol is a PEG-based linker designed for use in the synthesis of PROTACs, functioning through click chemistry mechanisms. This compound contains an azide group, enabling its participation in copper-catalyzed azide-alkyne cycloaddition (CuAAc) with alkyne-containing molecules. Additionally, it can engage in strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with DBCO or BCN groups, facilitating efficient bioconjugation processes. Its utility in PROTAC development makes it a valuable reagent for therapeutic research and target protein degradation studies.
  18. PROTAC Linkers

    Propargyl-PEG17-methane is a PEG-based linker designed for PROTAC synthesis, functioning as a versatile component in targeted protein degradation applications. Its alkyne group enables efficient click chemistry reactions through copper-catalyzed azide-alkyne cycloaddition (CuAAc) with azide-containing molecules. This reagent is crucial for the development of innovative therapeutics aimed at selectively modulating protein levels within cellular systems.
  19. PROTAC Linker

    Boc-NH-PEG7-acetic acid is a polyethylene glycol (PEG)-based linker designed for use in the synthesis of PROTACs (Proteolysis Targeting Chimeras). This compound facilitates the selective degradation of target proteins by linking a ligand that recruits an E3 ligase to a target protein. Its unique structure enhances solubility and enables efficient conjugation, making it valuable in drug discovery and development research focused on targeted protein degradation.
  20. PROTAC Linker

    Benzyl-PEG2-azide is a PEG-based linker specifically designed for the synthesis of PROTACs (Proteolysis Targeting Chimeras). It features an azide functional group that facilitates copper-catalyzed azide-alkyne cycloaddition (CuAAc) with alkyne-containing molecules. Additionally, it can engage in strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with compounds possessing DBCO or BCN groups. This reagent is instrumental in the development of targeted protein degradation strategies in chemical biology research.
  21. PROTAC Linker

    Biotin-PEG5-amine functions as a biotin-labeled polyethylene glycol (PEG) linker for the development of PROTAC (Proteolysis Targeting Chimera) molecules. This compound facilitates the synthesis of PROTACs by allowing for the precise conjugation of target proteins to E3 ligases, promoting targeted protein degradation. It is valuable in research focusing on protein regulation and therapeutic development.
  22. PROTAC Linkers

    TCO-PEG3-alcohol is a PEG-based linker specifically designed for PROTAC synthesis, functioning primarily through the inverse electron demand Diels-Alder (iEDDA) reaction. This compound features a TCO moiety that enables efficient coupling with tetrazine-conjugated molecules, facilitating the development of targeted protein degradation strategies. Its use in research applications enhances the exploration of protein function and regulation in various biological pathways.
  23. PROTAC Linkers

    DBCO-PEG4-triethoxysilane is a PEG-based PROTAC linker specifically designed for the synthesis of PROTACs. Its DBCO group facilitates strain-promoted alkyne-azide cycloaddition (SPAAC) with azide-containing molecules, enabling efficient conjugation. This compound is instrumental in the development of targeted protein degradation strategies, enhancing research in cancer therapy and other therapeutic areas.
  24. PROTAC Linkers

    m-PEG11-OH is a polyethylene glycol (PEG)-based linker designed for use in the synthesis of proteolysis-targeting chimeras (PROTACs). This compound facilitates the conjugation of targeting ligands to E3 ligase recruiters, enabling the selective degradation of protein targets in cellular systems. Its versatile applications include drug discovery and the study of protein function and regulation through targeted protein degradation.
  25. PROTAC Linkers

    PEG3-C4-OBn is a polyethylene glycol (PEG)-derived linker designed for use in PROTAC (Proteolysis Targeting Chimeras) applications. This compound facilitates the synthesis of PROTAC SGK3 degrader-1, which effectively induces targeted degradation of SGK3, a serine/threonine protein kinase. PEG3-C4-OBn is instrumental in advancing research related to targeted protein degradation and cellular regulation mechanisms.
  26. PROTAC Linker

    TCO4-PEG3-Maleimide is a PROTAC linker designed for targeted protein degradation applications. It features TCO and Maleimide functional groups, enabling precise "click" reactions with tetrazine and thiol compounds, or "mercapto-acrylamide" reactions. This compound facilitates the development of innovative therapeutic modalities by promoting effective protein-interaction dynamics in chemical biology research.
  27. PROTAC Linker

    THP-PEG4-Pyrrolidine(N-Me)-CH2OH is a polyethylene glycol (PEG)-based linker designed for use in PROTAC technology. This linker facilitates the synthesis of novel PROTAC compounds, notably the K-Ras Degrader-1, by promoting the degradation of specific target proteins via the ubiquitin-proteasome pathway. It is particularly useful in studies focused on targeted protein degradation for therapeutic applications.
  28. PROTAC Linker

    Propargyl-PEG8-Boc is a PEG-based linker designed for use in the synthesis of PROTACs. It features an alkyne functional group, enabling it to participate in copper-catalyzed azide-alkyne cycloaddition (CuAAc) reactions with azide-containing molecules. This versatile linker facilitates research in targeted protein degradation and can be employed in the development of innovative therapeutic strategies.
  29. PROTAC Linker

    Propargyl-PEG12-OH is a PEG-based linker designed for use in the synthesis of PROTACs (proteolysis-targeting chimeras). This compound features an alkyne group, allowing it to participate in copper-catalyzed azide-alkyne cycloaddition (CuAAc), facilitating the conjugation of azide-containing molecules. Propargyl-PEG12-OH is essential for developing targeted protein degradation systems and advancing chemical biology research applications.
  30. PROTAC Linker

    N-Mal-N-bis(PEG2-NH-Boc) is a PEG-based linker designed for use in the synthesis of proteolysis-targeting chimeras (PROTACs). This compound facilitates the conjugation of ligand and E3 ligase components, enhancing the efficacy of targeted protein degradation. Its unique structure supports optimized solubility and stability, making it suitable for a variety of chemical biology applications in protein research and drug discovery.
  31. PROTAC Linkers

    Bis-Mal-PEG11 is a polyethylene glycol (PEG) based PROTAC linker that facilitates the development of targeted protein degradation agents. It enhances the solubility and stability of PROTACs while improving their overall pharmacological properties. This linker is crucial for synthesizing PROTACs that engage specific E3 ligases, enabling selective degradation of target proteins in various cellular contexts.
  32. PROTAC Linker

    Azido-PEG4-Amido-Tris is a PEG-based linker designed for use in the synthesis of PROTACs (proteolysis-targeting chimeras). It features an azide functional group that facilitates copper-catalyzed azide-alkyne cycloaddition (CuAAc) with alkyne-containing compounds, as well as strain-promoted azide-alkyne cycloaddition (SPAAC) with molecules containing DBCO or BCN groups. This versatility makes Azido-PEG4-Amido-Tris a valuable tool for researchers developing targeted protein degradation strategies.
  33. PROTAC Linker

    3,4-Dibromo-Mal-PEG2-amine TFA is a PEG-based linker designed for use in the synthesis of PROTACs (Proteolysis Targeting Chimeras). This compound facilitates the conjugation of target proteins to E3 ligases, thereby promoting targeted protein degradation. Its unique structure enhances the pharmacokinetic properties of PROTAC molecules, making it suitable for diverse applications in drug discovery and chemical biology.
  34. PROTAC Linker

    Methylamino-PEG3-azide serves as a versatile PROTAC linker, facilitating the synthesis of proteolysis-targeting chimeras (PROTACs). This compound features an azide group, enabling it to participate in copper-catalyzed azide-alkyne cycloaddition (CuAAc) with alkyne-containing substrates. In addition, it can engage in strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with DBCO or BCN groups, making it a valuable tool for chemical biology applications, particularly in targeted protein degradation studies.
  35. PROTAC Linker

    Amino-PEG1-C2-acid is a polyethylene glycol (PEG) linker designed for use in the development of proteolysis targeting chimeras (PROTACs). This compound facilitates the conjugation of target proteins with E3 ligases, promoting targeted protein degradation. Its biocompatibility and flexible structure make it an ideal choice for research applications focusing on targeted protein modulation and therapeutic strategies.
  36. PROTAC Linkers

    Mal-amide-PEG2-oxyamine is a PEG-based linker specifically designed for use in PROTAC (Proteolysis Targeting Chimera) synthesis. This compound facilitates the targeted degradation of specific proteins by connecting E3 ligases with ligands that bind to the desired protein, enabling precise modulation of protein levels. Its application in PROTAC development supports research in targeted therapy, cellular signaling, and protein homeostasis.
  37. PROTAC linker

    N-(Boc-PEG1)-N-bis(PEG2-propargyl) is a PEG-based PROTAC linker designed for the synthesis of proteolysis-targeting chimeras (PROTACs). Featuring a propargyl group, this compound facilitates click chemistry through copper-catalyzed azide-alkyne cycloaddition (CuAAc), enabling efficient conjugation with azide-containing molecules. Its versatility supports research applications in targeted protein degradation and novel therapeutic development.
  38. PROTAC Linker

    Biotin-PEG6-Mal is a biotinylated polyethylene glycol (PEG) linker designed for use in the synthesis of proteolysis-targeting chimeras (PROTACs). This compound facilitates the conjugation of targeting ligands to E3 ligases, enabling selective degradation of intracellular proteins. Its unique structure allows for increased solubility and stability in biological systems, making it a valuable tool in chemical biology and targeted protein degradation research.
  39. PROTAC Linkers

    Methyltetrazine-amido-PEG5-alkyne is a PEG-based linker designed for use in the synthesis of Proteolysis Targeting Chimeras (PROTACs). This compound facilitates the selective degradation of target proteins through the recruitment of E3 ubiquitin ligases. Its application in PROTAC development enables enhanced therapeutic strategies in the field of targeted protein degradation for various diseases, including cancer.
  40. PROTAC Linkers

    Azido-PEG6-MS is a PEG-based linker specifically designed for the synthesis of PROTACs (proteolysis-targeting chimeras). Featuring an azide functional group, it facilitates copper-catalyzed azide-alkyne cycloaddition (CuAAc) as well as strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with alkyne-containing molecules or those labeled with DBCO or BCN groups. This reagent is particularly useful in the development of targeted protein degradation strategies, enabling precise control over the conjugation of various biologically active compounds for research applications.
  41. PROTAC Linker

    Ac4GalNAl is an alkyl chain-based linker designed for use in the synthesis of PROTACs (Proteolysis Targeting Chimeras). Featuring an alkyne functional group, it facilitates copper-catalyzed azide-alkyne cycloaddition (CuAAc) with azide-containing molecules. This reagent serves as a tool for developing targeted protein degradation systems and is valuable in chemical biology research focused on modulating protein levels within cells.
  42. PROTAC Linkers

    m-PEG17-acid functions as a polyethylene glycol (PEG)-based linker for the development of proteolysis-targeting chimeras (PROTACs). This compound facilitates the connection of the ligand and the target protein, enhancing the efficiency of targeted protein degradation. Its application is pivotal in chemical biology research aimed at understanding and manipulating cellular protein levels.
  43. PROTAC Linkers

    m-PEG4-NH-DBCO is a polyethylene glycol (PEG)-based linker designed for the synthesis of PROTACs (Proteolysis Targeting Chimeras). This compound features a dibenzocyclooctyne (DBCO) moiety, enabling effective strain-promoted alkyne-azide cycloaddition (SPAAC) with azide-containing molecules. Its properties facilitate the development of targeted protein degradation strategies in chemical biology research, positioning m-PEG4-NH-DBCO as a valuable tool for advancing PROTAC technology.
  44. PROTAC Linker

    Amino-PEG13-amine is a polyethylene glycol (PEG) based linker specifically designed for use in the synthesis of PROTACs (Proteolysis Targeting Chimeras). This compound facilitates the formation of drug conjugates that combine target proteins with E3 ubiquitin ligases, enabling selective degradation mechanisms. Its hydrophilic nature enhances solubility and bioavailability, making it a valuable tool for researchers exploring targeted protein degradation strategies in drug discovery and development.
  45. PROTAC Linker

    Mal-NH-Boc is an alkyl/ether-based PROTAC linker designed to facilitate the synthesis of proteolysis-targeting chimeras (PROTACs). This compound serves as a critical component in the development of PROTACs, enabling targeted protein degradation. Its structural properties allow for efficient conjugation, enhancing the efficacy of therapeutic applications in the study of protein functions and cellular pathways.
  46. PROTAC Linker

    THP-PEG4-Pyrrolidine(N-Boc)-CH2OH is a PEG-based PROTAC linker designed for targeted protein degradation applications. This compound facilitates the synthesis of PROTAC K-Ras Degrader-1, enabling the selective degradation of the K-Ras protein. It is essential for research in therapeutic strategies aimed at modulating protein levels in various disease models.
  47. PROTAC Linker

    Aldehyde-benzyl-PEG5-alkyne serves as a PEG-based linker for the synthesis of PROTACs, facilitating targeted protein degradation. This compound features an alkyne group that enables its use in click chemistry reactions, specifically undergoing copper-catalyzed azide-alkyne cycloaddition (CuAAc) with azide-bearing molecules. Its utility in synthesizing novel PROTACs makes it valuable for biochemical research applications focused on protein modulation and degradation pathways.
  48. PROTAC Linker

    N-(Boc-PEG3)-N-bis(PEG3-acid) is a PEG-based linker specifically designed for PROTAC (Proteolysis Targeting Chimera) synthesis. This compound enhances the solubility and cellular uptake of PROTACs while providing a flexible connection between the target protein and the E3 ligase. Its application in drug development allows for the targeted degradation of proteins, thereby facilitating innovative research in cancer therapy and beyond.
  49. PROTAC Linker

    N-Mal-N-bis(PEG4-NHS ester) is a PEG-based linker designed for PROTAC (Proteolysis Targeting Chimera) applications. It facilitates the synthesis of PROTACs by providing a flexible and effective means to conjugate targeting ligands to E3 ligase components. This reagent is essential for researchers aiming to explore targeted protein degradation pathways in various biological contexts.
  50. PROTAC Linker

    N3-PEG5-C6-Cl is a polyethylene glycol (PEG) linker designed for use in PROTAC (Proteolysis Targeting Chimera) synthesis. This compound facilitates the formation of degradable protein-targeting molecules, enhancing the delivery and efficacy of targeted protein degradation strategies. It is ideal for applications in chemical biology, particularly in the development of novel therapeutic agents aimed at selective protein modulation.

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