Proteases

Items 1001-1050 of 1366

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  1. MuRF1 Inhibitor

    MyoMed 205 is a potent MuRF1 inhibitor that functions by preventing the ubiquitination and proteasomal degradation of skeletal muscle proteins. This compound enhances muscle performance and mitigates muscle wasting and weight loss associated with various conditions. MyoMed 205 is suitable for research applications related to cancer cachexia, type 2 diabetes mellitus, and heart failure with preserved ejection fraction, making it a valuable tool in understanding muscle atrophy and metabolic disorders.
  2. 26S Proteasome Substrate

    Ac-Nle-Pro-Nle-Asp-AMC is a specific substrate designed for the 26S proteasome, targeting its catalytic activities. This compound is utilized primarily for assessing the caspase-like activity of the 26S proteasome in various biological studies. Its application is crucial for understanding proteasomal regulation and function in cellular processes.
  3. Calpain-2 Inhibitor

    Calpain-2-IN-1 is an isoform-specific inhibitor targeting calpain-2, exhibiting a Ki of 7.8 nM for calpain-2 and 181 nM for calpain-1. This selective inhibition allows for precise modulation of calpain-2 activity, making it a valuable tool in the study of neurodegenerative diseases and disorders affecting synaptic function. Its application in research provides insights into the role of calpain-2 in various cellular processes and disease mechanisms.
  4. Immunoproteasomes Inhibitor

    LU-005i is a potent inhibitor of the β5i subunit of immunoproteasomes, demonstrating an IC50 of 6.6 nM and selectivity over the β5c subunit with an IC50 of 287 nM. This compound is valuable for research into modulation of immune responses and antigen processing, offering insights into autoimmune diseases and cancer immunotherapy. Its specificity for immunoproteasomes makes it a useful tool for studying the role of proteasomal pathways in various biological processes.
  5. 20S Proteasome Inhibitor

    5-Amino-8-hydroxyquinoline is a non-competitive inhibitor of the 20S proteasome, demonstrating potent inhibitory effects on NF-κB activity. This compound induces apoptosis in cancer cells while exhibiting minimal cytotoxicity towards normal hematopoietic cells. It is valuable for research applications in cancer biology, particularly in the study of leukemia and related malignancies.
  6. Arg Tag

    Boc3Arg is a tert-butyl carbamate-protected form of arginine, designed to facilitate protein degradation by targeting the 20S proteasome. Its unique properties enable efficient localization of tagged proteins for proteasomal degradation, making it a valuable tool in studies of protein turnover and regulation. Boc3Arg is particularly useful in research applications that investigate ubiquitin-proteasome pathways and protein quality control mechanisms in cells.
  7. Calpain Inhibitor

    Dazcapistat is an orally active small-molecule inhibitor targeting calpain 1, 2, and 9. This compound significantly reduces the expression and production levels of IL-6 in injured lung tissue, contributing to decreased fibrosis. Dazcapistat exhibits anti-fibrotic properties in various animal models, including those for skin, liver, and lung fibrosis. Its applications extend to research on coronavirus disease 2019 (COVID-19) and idiopathic pulmonary fibrosis.
  8. Immunoproteasome Inhibitor

    Zetomipzomib is a selective inhibitor of the immunoproteasome, specifically targeting the LMP7 and LMP2 subunits with reported IC50 values of 39 nM and 131 nM, respectively. This first-in-class compound demonstrates significant potential in the investigation of autoimmune diseases, providing a valuable tool for research into the modulation of immune responses and proteasomal degradation pathways. Researchers can utilize Zetomipzomib to explore therapeutic avenues for conditions where the immunoproteasome plays a critical role.
  9. 26S Proteasome Substrate

    Ac-RLR-AMC is a fluorogenic substrate specifically designed for the 26S proteasome pathway. Upon proteolytic cleavage, the release of 7-amino-4-methylcoumarin (AMC) generates fluorescence, facilitating the quantification of trypsin-like activity within the proteasome. This reagent is valuable for research applications focused on proteasome function, cellular regulation, and related biochemical assays.
  10. Proteasome Inhibitor

    LU-002i is a selective inhibitor of the β2c and β2i subunits of the human proteasome, exhibiting an IC50 of 220 nM for the β2i subunit. This compound is valuable for research applications involving protein degradation and cellular stress responses. Its specific targeting can aid in the elucidation of proteasome-related pathways and the development of therapeutic strategies for conditions influenced by proteasome activity.
  11. Immunoproteasome β5i Subunit Inhibitor

    DPLG3 is a selective inhibitor of the immunoproteasome β5i subunit, demonstrating an IC50 of 4.5 nM. It effectively inhibits the mouse i-20S proteasome with an IC50 value of 9.4 nM. DPLG3 is capable of downregulating the protein levels of NF-κB p50 and p65, highlighting its potential in the study of immune-related diseases and therapeutic applications.
  12. Proteasome Inhibitor

    BC-23 (NSC 45382) is a potent proteasome inhibitor that selectively inhibits the chymotrypsin-like (CT-L) activity of the proteasome complex. This compound demonstrates significant cytotoxicity against malignant cells while sparing normal cells, making it a valuable tool for cancer research. BC-23 is utilized in studies aimed at elucidating the role of proteasomal degradation in cell cycle regulation and tumor progression.
  13. Immunoproteasome Activator

    Immunoproteasome Activator 1 is a selective activator of the immunoproteasome that enhances the presentation of MHC-I-bound peptides by over 100-fold. This compound functions by binding to the proteasome structural subunit PSMA1, facilitating the association of the proteasome activator PA28α/β (PSME1/PSME2) with immunoproteasomes. Its significant biological activity makes it valuable for research focused on immune response modulation and antigen processing.
  14. Proteasome Subunit Binder

    Biotin-epoxomicin is a proteasome subunit binder that serves as an affinity reagent for the identification and purification of proteasomal catalytic subunits. This compound enables the affinity purification of active subunits, facilitating their subsequent analysis via liquid chromatography-mass spectrometry (LC-MS). Biotin-epoxomicin is particularly useful in research applications focused on solid tumors, such as those derived from B16 melanoma, providing insights into proteasome function in cancer biology.
  15. Thrombin Inhibitor

    Thrombin Inhibitor 5 is a potent thrombin inhibitor, exhibiting IC50 values between 0.1 μM and 1 μM. This compound demonstrates significant biological activity in the modulation of thrombin activity, making it a valuable tool in researching venous thromboembolism and related coagulation disorders. Its efficacy allows for potential applications in understanding thrombotic mechanisms and developing therapeutic interventions.
  16. calpain I Inhibitor

    (Rac)-Calpain Inhibitor XII is a reversible and selective inhibitor of calpain I, exhibiting a binding affinity of Ki=19 nM. This compound displays reduced binding to calpain II (Ki=120 nM) and cathepsin B (Ki=750 nM), making it a valuable tool for dissecting calpain-related biochemical pathways. Its applications span various fields, including studies on neutrophil chemotaxis, neuronal signaling, and cardiac responses to injury, facilitating insights into calpain's role in cellular processes and pathologies.
  17. 20S Proteasome Substrate

    Z-Leu-Leu-Leu-AMC is a fluorogenic substrate designed for the assessment of chymotrypsin-like protease activity in the 20S proteasome. It provides a sensitive and specific means to monitor proteasomal function and proteolytic activity. This reagent is valuable for research applications involving protein degradation, cellular homeostasis, and the study of proteasome-related diseases.
  18. Proteasome Inhibitor

    Biotin-(Oaa)3-epoxomicin is a biotinylated proteasome inhibitor derived from Epoxomicin, connected through three hydrophilic oxaacetyl amino acid linkers. This compound is utilized primarily in proteomic research for the capture and identification of proteasome complexes, facilitating target validation and elucidation of intracellular targets. Epoxomicin effectively inhibits proteasome activity through covalent binding to catalytic subunits such as LMP7, X, MECL1, and Z, with a pronounced effect on chymotrypsin-like activity, while sparing non-proteasomal proteases like trypsin and papain. Additionally, it serves as an NF-κB inhibitor, demonstrating potential in studies of inflammatory responses.
  19. Immunoproteasome/Proteasome Inhibitor

    Immunoproteasome inhibitor 1 is a potent reversible inhibitor of the immunoproteasome and the proteasome, targeting the β5c, β1i, and β5i subunits with Kis of 1.18, 0.27, and 1.91 μM, respectively. This compound exhibits significant biological activity in modulating protein degradation pathways, making it a valuable tool for investigating the role of the immunoproteasome in various neoplastic diseases. Its unique mechanism of action facilitates research into targeted therapies and mechanistic studies in oncology.
  20. Calpain Inhibitor

    Ac-Leu-Leu-Norleucinol (ALLN) is a potent calpain inhibitor that plays a critical role in the study of proteolytic pathways. This compound has demonstrated effectiveness in mitigating acetaminophen-induced acute liver damage by lowering the levels of liver enzymes such as alanine aminotransferase (ALT) and aspartate aminotransferase (AST). Its application extends to research focused on cellular stress responses and the mechanisms of liver injury.
  21. Ubiquitin-proteasome System Stressor

    RAMB4 is a potent ubiquitin-proteasome system (UPS) stressor that inhibits ubiquitin-mediated protein degradation upstream of the 20S proteasomal catalytic activities. By triggering a UPS-stress response, RAMB4 effectively disrupts protein homeostasis without directly impacting the catalytic functions of the 20S proteasome. Its unique mechanism positions RAMB4 as a valuable tool for investigating UPS-related pathways and contributes to anticancer research by enhancing cellular stress responses.
  22. Calpain Inhibitor

    (1S,2R)-Alicapistat is a selective inhibitor of human calpains 1 and 2, targeting these proteolytic enzymes involved in cellular signaling. With an IC50 value of 395 nM for calpain 1, it demonstrates significant biological activity, potentially making it valuable in Alzheimer's disease research. This compound's oral bioavailability and specificity may aid in elucidating the role of calpains in neurodegenerative disorders.
  23. Calpain 1 Inhibitor

    Calpain Inhibitor-1 is a selective inhibitor of calpain 1, a cysteine protease, with an IC50 value of 100 nM and a Ki of 2.89 μM. This compound is instrumental in studying calpain-mediated processes, including cellular signaling and apoptosis. It serves as a valuable tool in research applications focusing on neurodegenerative diseases, cardiac protection, and cancer therapy, where calpain activity is implicated.
  24. Proteasome Inhibitor

    Enzyme-IN-1 is a potent proteasome inhibitor that targets the chymotrypsin-like activity (CT-L) of the 20S proteasome, specifically inhibiting N-terminal nucleophile (Ntn) hydrolases. This compound has demonstrated key biological activity in modulating protein degradation pathways, which may confer potential anti-inflammatory properties. Enzyme-IN-1 is suitable for research applications focused on studying proteasome-related processes and their implications in various disease models.
  25. 20S Proteasome Inhibitor

    20S Proteasome-IN-1 is a selective inhibitor of the 20S proteasome, functioning primarily by disrupting protein degradation pathways. This compound exhibits significant potential in studying various diseases, including cancer, immune-related disorders, inflammatory conditions, ischemic events, and neurodegenerative disorders. Its application in research enables a deeper understanding of proteasomal regulation and its role in cellular homeostasis and signaling pathways.
  26. Substrate

    Calpain substrate is a fluorogenic substrate specifically designed for the assessment of calpain enzymatic activity. It is membrane non-permeable, ensuring precise measurement of calpain activity in biological samples. This reagent is suitable for applications in cellular signaling research and studies investigating calpain's role in various physiological and pathological processes.
  27. Proteasome Inhibitor

    20S Proteasome-IN-2 is a selective inhibitor of the human 20S proteasome, specifically targeting the β5 subunit with an IC50 of 0.18 μM. This compound exhibits significant anti-proliferative effects in both in vitro and in vivo models, effectively inducing cell cycle arrest at the G2/M phase. It serves as a valuable tool for research focused on cancer biology and the mechanisms of proteasome function.
  28. RMCP I/RMCP II/Chymotrypsin Substrate

    Suc-Ala-Ala-Pro-Phe-SBzl is a synthetic peptide substrate targeting rat intestinal mast cell proteases RMCP I and RMCP II, as well as chymotrypsin. It serves as a useful tool for investigating proteolytic activity in biochemical assays. Additionally, Suc-Ala-Ala-Pro-Phe-SBzl can be hydrolyzed by glycine (R208G), facilitating studies on enzyme specificity and catalytic mechanisms. This substrate is valuable in researching mast cell biology and protease functions.
  29. Proteasome-Activating Peptide

    Proteasome-activating peptide 1 is a peptide that enhances chymotrypsin-like activity of the proteasome, thereby increasing proteolytic rates in vitro and in cellular cultures. This compound plays a significant role in preventing protein aggregation, demonstrated in cellular models of amyotrophic lateral sclerosis. Its ability to modulate proteasomal activity makes it a valuable tool for research into neurodegenerative diseases and protein homeostasis.
  30. Proteasome Inhibitor

    RC-106 is a potent proteasome inhibitor, exhibiting an IC50 of 35 μM, and functions as a sigma receptor modulator. This compound demonstrates significant antiproliferative effects on various cancer cell lines, including glioblastoma and multiple myeloma. Its dual mechanism of action makes RC-106 a valuable reagent for research in cancer biology and therapeutic development.
  31. LMP7 Inhibitor

    LMP7-IN-1 is a selective inhibitor targeting the immunoproteasome subunit LMP7 (β5i), with an IC50 of 1.83 nM. This boronic acid derivative demonstrates potent inhibition, making it an invaluable tool for research into protein degradation and immune response modulation. LMP7-IN-1 is applicable in studies focused on autoimmune diseases, cancer, and other conditions where immunoproteasome activity can impact cellular function and pathology.
  32. CD13 and Proteasome Inhibitors

    BC-05 is a potent inhibitor of CD13 and the 20S proteasome, exhibiting an IC50 of 0.13 μM for human CD13 and 1.39 μM for the proteasome. This compound is orally active and serves as a valuable tool in the investigation of multiple myeloma and related hematological malignancies. Its dual-targeting mechanism makes BC-05 a significant reagent for elucidating pathways involved in cancer progression and therapeutic resistance.
  33. UPS Inhibitor

    Leptosphaerodione is a potent inhibitor of the ubiquitin-proteasome system (UPS), isolated from the fungus Remotididymella sp. This compound exhibits significant cytotoxic effects in HeLa cells, with an IC50 value of 3.2 μM. Leptosphaerodione serves as a valuable tool for research applications related to cancer biology and the development of anti-tumor strategies.
  34. Proteasome Inhibitor

    Tyropeptin A-4 is a potent proteasome inhibitor that specifically targets the mammalian 20S proteasome. It exerts its inhibitory effect by binding to the site responsible for trypsin-like activity, which is critical for protein degradation. This compound is valuable for research applications studying cellular processes involving proteasome activity and protein turnover, as well as potential therapeutic strategies for diseases related to proteasome dysfunction.
  35. Calpain-1 Inhibitor

    Calpain Inhibitor XI is a reversible covalent inhibitor targeting calpain-1. This compound demonstrates significant inhibitory effects on calpain-1 activity, making it a valuable tool for studying neurodegenerative disorders and associated cellular pathways. Researchers can utilize Calpain Inhibitor XI to investigate the role of calpain-1 in various physiological and pathological processes.
  36. Proteasome Inhibitor

    FV-162 is a potent, orally active, and irreversible proteasome inhibitor that demonstrates significant cytotoxicity in human myeloma cell lines and primary myeloma cells. This compound effectively inhibits tumor growth in myeloma xenograft mouse models, making it a valuable tool for cancer research. FV-162 is specifically applicable in the investigation of multiple myeloma and related therapeutic strategies.
  37. Calpain Inhibitor

    AK 275 is a potent calpain inhibitor that demonstrates neuroprotective activity. Its mechanism of action involves the inhibition of calpain-mediated proteolysis, making it a valuable tool for investigating central nervous system trauma and ischemia. Researchers can utilize AK 275 to explore its therapeutic potential and underlying pathways in neurodegenerative conditions.
  38. Proteasome Inhibitor

    Cadmium pyrithione is a metal compound that serves as a potent proteasome inhibitor, specifically targeting protein deubiquitinase activity. Its application leads to significant accumulation of ubiquitinated proteins in cancer and primary leukemia cells, contributing to its anticancer effects. By prominently inhibiting deubiquitinase activities, such as USP14 and UCHL5, Cadmium pyrithione induces apoptosis via caspase activation, while showing a lesser impact on 20S proteasome activity. Additionally, its suppression of proteasome function has been demonstrated to impede tumor growth in animal xenograft models, highlighting its potential for cancer research.
  39. 19S RP Inhibitor

    TCL1 is a selective non-covalent inhibitor that targets the Pru domain of the Rpn-13 subunit within the 19S regulatory particle (19S RP) of the proteasome, exhibiting an IC50 of approximately 26 μM. By disrupting the recognition and transport of ubiquitinated proteins, TCL1 inhibits proteasomal degradation, thereby influencing intracellular protein metabolism. This compound shows significant potential for studying hematological malignancies and related therapeutic strategies.
  40. Proteasome Inhibitor

    ZINC09518833 is an α-ketoamide nonpeptidic proteasome inhibitor that demonstrates effective binding to both primed and nonprimed sites of the proteasome, with an IC50 value of 12.4 μM. This compound exhibits significant biological activity relevant to the treatment of multiple myeloma (MM), making it a valuable tool for research in cancer biology and therapeutic development. Its mechanism of action provides insights into proteasomal degradation pathways and their role in oncogenesis.
  41. LMP7 Inhibitor

    LMP7-IN-2 is a selective inhibitor of the LMP7 protease, which is part of the immunoproteasome involved in antigen processing and inflammation regulation. This compound demonstrates significant biological activity in modulating inflammatory responses and has potential applications in the study of associated inflammatory diseases and disorders. Its use in research may aid in the understanding of immune mechanisms and the development of therapeutic strategies targeting inflammation.
  42. 20S Proteasome Inhibitor

    5-Amino-8-hydroxyquinoline dihydrochloride is a potent non-competitive inhibitor of the 20S proteasome. This compound effectively inhibits NF-κB activity, leading to apoptosis in cancer cells while exhibiting minimal cytotoxicity towards normal hematopoietic cells. Its unique properties make it a valuable tool for cancer research, particularly in studies related to leukemia and other malignancies.
  43. Proteasome Substrate

    Z-Leu-Leu-Glu-βNA is a substrate specifically designed to assess the catalytic activity of glutamylpeptidyl-peptide hydrolase in the 20S proteasome. This fluorogenic substrate enables the monitoring of proteasome activity, which is crucial for studies involving protein degradation and regulation in various cellular processes. Researchers can utilize Z-Leu-Leu-Glu-βNA in assays that explore the role of the proteasome in pathophysiological conditions and drug responses.
  44. 20S Proteasome Inhibitor

    20S Proteasome-IN-3 is a potent inhibitor of the 20S proteasome β5 subunit, with an IC50 value of 1.64 μM. This compound exhibits significant anti-tumor proliferation activity, making it a valuable tool in cancer research. It is useful for studies investigating the role of proteasome inhibition in tumor biology and therapeutic applications.
  45. Proteasome Inhibitor

    Proteasome β2c/i-IN-1 is a selective inhibitor of the human proteasome subunits β2c and β2i. This compound effectively impairs proteasome function, leading to the accumulation of ubiquitinated proteins. It is utilized in research applications focused on protein degradation pathways, cellular stress responses, and mechanisms of cancer development.
  46. Proteasome Inhibitor

    Z-LLF-CHO (Z-Leu-Leu-Phe-CHO) is a potent inhibitor of the chymotrypsin-like activity of the proteasome, exhibiting an inhibition constant (Ki) of 460 nM. This compound also functions as an inhibitor of NF-κB nuclear translocation, making it valuable for studies involving immune response and inflammation. Research applications include investigations into proteolytic processes and the role of cytokines in various disease models.
  47. Proteasome Inhibitor

    TIR-199 is a selective dual proteasome inhibitor targeting the PSMB5 subunit of the constitutive proteasome and the PSMB8 subunit of the immunoproteasome. This compound exhibits significant cytotoxicity against various tumor cell lines, making it a valuable tool for cancer research. TIR-199 is particularly relevant for studies focused on multiple myeloma and the underlying mechanisms of proteasome inhibition in neoplastic cell death.
  48. Proteasome Inhibitor

    Davelizomib is a potent proteasome inhibitor that exerts antineoplastic effects through the disruption of protein degradation pathways. By inhibiting the proteasome, it promotes the accumulation of pro-apoptotic factors and enhances the apoptotic response in cancer cells. This compound is primarily utilized in cancer research to explore therapeutic strategies against multiple myeloma and other malignancies.
  49. proteasome Inhibitor

    Proteasome-IN-5 is a selective proteasome inhibitor that disrupts the ubiquitin-proteasome pathway, leading to the accumulation of polyubiquitinated proteins. This compound exhibits significant antitumor activity and is valuable in research related to cancer biology and neurodegenerative diseases. Proteasome-IN-5 can be utilized to study the role of proteasomal degradation in cellular processes and to explore potential therapeutic strategies targeting proteasome dysfunction.
  50. LMP2 Inhibitor

    LU-001i is a selective inhibitor of the proteasome β1i subunit (LMP2). While LU-001i exhibits minimal immunomodulatory effects as a standalone treatment, its combination with LMP7 inhibitors, such as PRN1126, enhances anti-inflammatory and immunomodulatory activities. This reagent is valuable for investigating the mechanisms underlying autoimmune diseases and developing targeted therapeutic strategies.

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