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Catalog No.
Product Name
Application
Product Information
Citations
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Nematode Growth Inhibitor
5-(4-Methoxyphenyl)oxazole is a nematode growth inhibitor that targets Caenorhabditis elegans, effectively interfering with hatching and growth processes. This compound, derived from fungal culture broth, exhibits potential in studying nematode biology and assessing the efficacy of nematicidal agents. Its application in research provides valuable insights into nematode management and development. -
FREP1 Inhibitor
P-orlandin is a specific inhibitor of FREP1, a protein that mediates the binding of Plasmodium gametocytes and ookinetes. This fungal metabolite demonstrates potent activity in blocking Plasmodium falciparum infections in mosquito vectors, making it a valuable tool for research in malaria transmission and vector control studies. Its unique mode of action offers insights into potential strategies for disrupting the lifecycle of malaria parasites. -
Quorum Sensing Inhibitor
Aculene D is a quorum sensing inhibitor derived from fungal metabolites that targets the signaling mechanisms in bacteria. It effectively reduces violacein production in Chromobacterium violaceum CV026 cultures induced by N-hexanoyl-L-homoserine lactone (C6-HSL) at sub-inhibitory concentrations. This compound is valuable for research exploring bacterial communication and the modulation of biofilm formation, with potential applications in combating antibiotic resistance and developing new antimicrobial strategies. -
AgrA Quorum-sensing Inhibitor
Apicidin D2 is a specific inhibitor of the accessory gene regulator A (AgrA), which plays a pivotal role in bacterial quorum sensing. This fungal metabolite demonstrates notable anti-virulence properties by effectively suppressing AgrA activation in Staphylococcus aureus, including methicillin-resistant strains (MRSA), without exhibiting biocidal effects. Apicidin D2 is a valuable reagent for research focused on understanding MRSA infections and developing strategies to combat quorum-sensing related pathogenicity. -
DGK Inhibitor
Cochlioquinone A is a potent diacylglycerol kinase (DGK) inhibitor, exhibiting ATP-competitive properties with a Ki value of 3.1 μM. Isolated from the fungal species Drechslera sacchari, Cochlioquinone A serves as a valuable tool for studying DGK's role in cellular signaling pathways. Its inhibitory effects on DGK activity make it pertinent for research in lipid signaling and related biological processes. -
ACAT Inhibitor
Phenylpyropene A is a potent inhibitor of acyl-CoA: cholesterol acyltransferase (ACAT), exhibiting an IC50 of 0.8 μM. This fungal metabolite has shown significant biological activity in modulating cholesterol esterification. Its application is particularly relevant in research focused on cholesterol metabolism and related disorders. -
ACAT Inhibitor
Terpendole I is a fungal indoloditerpene that functions as an acyl-CoA: cholesterol acyltransferase (ACAT) inhibitor, exhibiting an IC50 value of 145 µM. This compound demonstrates significant biological activity in modulating cholesterol metabolism, making it a valuable tool for studying lipid regulation and related metabolic disorders. Terpendole I can be utilized in research focused on atherogenesis, cholesterol homeostasis, and the therapeutic exploration of cardiovascular diseases. -
Acyltransferase Inhibitor
Amidepsine D is an acyltransferase inhibitor derived from the fungal metabolite isolated from the culture broth of Humicola sp. FO-2942. It specifically inhibits diacylglycerol acyltransferases (DGAT), playing a crucial role in lipid metabolism regulation. This compound is valuable for research applications focused on examining lipid biosynthesis pathways and exploring potential therapeutic targets in metabolic disorders. -
ACAT Inhibitor
Lateritin is a potent inhibitor of acyl-CoA:cholesterol acyltransferase (ACAT), derived from the mycelial cake of Gibberella lateritium IFO 7188. This compound exhibits significant biological activity by inhibiting the growth of various human cancer cell lines, as well as displaying antibacterial effects against gram-positive bacteria and antifungal activity against Candida albicans. Lateritin is a valuable tool for research in cancer therapeutics and the study of lipid metabolism. -
ACAT Inhibitor
Glisoprenin A is an inhibitor of acyl-CoA: cholesterol acyltransferase (ACAT), targeting cholesterol metabolism. It has demonstrated significant activity in inhibiting the formation of appressorium on hydrophobic surfaces in the fungal pathogen Magnaporthe grisea. This compound is valuable for research into fungal plant pathogens and cholesterol metabolism dynamics. -
ACAT Inhibitor
Glisoprenin D is an ACAT inhibitor that selectively targets cholesterol acyltransferase, thereby influencing lipid metabolism. It has been shown to inhibit the formation of appressorium on the hydrophobic surfaces of Magnaporthe grisea, making it a valuable tool for studying fungal pathogenesis and plant-fungal interactions. This compound has potential applications in both basic and applied research within mycology and plant sciences. -
ACAT Inhibitor
Glisoprenin C is a selective inhibitor of acyl-CoA:cholesterol acyltransferase (ACAT), which plays a crucial role in cholesterol metabolism. By inhibiting ACAT, Glisoprenin C effectively disrupts cholesterol esterification, impacting the pathogenicity of organisms such as Magnaporthe grisea by preventing appressorium formation on hydrophobic surfaces. This compound is valuable in studying cholesterol-related pathways and evaluating potential therapeutic strategies against fungal pathogens. -
ACAT Inhibitor
Glisoprenin E is an ACAT inhibitor that effectively inhibits cholesterol acyltransferase activity. This compound has demonstrated biological activity by preventing the formation of appressorium on hydrophobic surfaces in the phytopathogen Magnaporthe grisea. Its applications are significant in studying fungal pathogenicity and the role of lipid metabolism in plant-fungal interactions. -
Mitotic kinesin Inhibitor
Mitotic kinesin-IN-1 hydrochloride is a potent inhibitor of mitotic kinesin, specifically designed to disrupt the process of mitosis. This compound effectively impairs cell proliferation and has applications in cancer research, as well as investigations into cardiac hypertrophy, immune and inflammatory disorders, and fungal infections. Its ability to hinder mitotic activity makes it a valuable tool for studying various cellular processes and pathways related to these conditions. -
CYP51 Inhibitor
CYP51-IN-21 is a potent inhibitor of cytochrome P450 51 (CYP51), demonstrating significant antifungal activity against various pathogenic fungi, including drug-resistant strains. By targeting CYP51, CYP51-IN-21 disrupts the biosynthesis of essential sterols, impairing fungal growth and viability. Additionally, CYP51-IN-21 effectively inhibits the formation of fungal biofilms, making it a valuable candidate for research in antifungal therapeutics and biofilm-related studies. -
Squalene Synthase Inhibitor
Squalestatin 3 is a potent squalene synthase inhibitor, demonstrating an IC50 of 6 nM. This secondary metabolite, isolated from the fungus Phoma, plays a critical role in regulating the biosynthesis of sterols and terpenes. It is valuable for research applications focused on cholesterol biosynthesis, antifungal research, and the exploration of lipid metabolism pathways. -
Acinar Morphogenesis Inhibitor
Fusarisetin A is a pentacyclic fungal metabolite that functions as an acinar morphogenesis inhibitor. This compound disrupts the normal formation and development of acinar structures in cells, making it a valuable tool for investigating the mechanisms of acinar morphogenesis. Its unique biological activity supports research in developmental biology and tissue engineering. -
Mitochondrial Inhibitor
Fusaramin is a mitochondrial inhibitor that demonstrates potent activity against plant pathogenic fungi. It disrupts mitochondrial function, leading to the impairment of fungal growth and viability. This compound is valuable for research applications focused on plant disease management and the study of mitochondrial biology in pathogenic organisms. -
SDH Inhibitor
Inpyrfluxam is a potent inhibitor of succinate dehydrogenase (SDH), specifically targeting the ubiquinone binding pocket of the mitochondrial SDH complex subunits ViSDHB, ViSDHC, and ViSDHD. This inhibition disrupts cellular respiration, demonstrating efficacy in inhibiting conidial germination and mycelial growth of Venturia inaequalis in vitro. Inpyrfluxam is valuable for research studies focused on apple scab and related fungal pathogens. -
Melanin Biosynthesis Inhibitor
Scytalol A is a selective inhibitor of dihydroxynaphthalene melanin biosynthesis in Lachnellula sp. A32-89, effectively disrupting melanin production without affecting the growth of the organism. This compound is valuable for research investigating melanin biosynthesis pathways and can be utilized in studies focused on fungal pigmentation and its applications in various biotechnological fields. -
Acyltransferase Inhibitor
Amidepsine A is an acyltransferase inhibitor derived from the fungal metabolite of Humicola sp. FO-2942. This compound specifically inhibits the activity of diacylglycerol acyltransferases (DGAT), which play a crucial role in lipid metabolism. Its biological activity makes Amidepsine A a valuable reagent for research applications focused on lipid biosynthesis and metabolic regulation. -
Succinate Dehydrogenase Inhibitor
Flubeneteram is an inhibitor of succinate dehydrogenase, exhibiting an IC50 value of 0.0484 μM. This compound effectively disrupts the activity of succinate dehydrogenase, contributing to its biological activity. Flubeneteram has demonstrated protective effects against fungal pathogens such as Rhizoctonia solani and Sphaerotheca fuliginea in preclinical studies. It is a valuable reagent for research focused on fungal infection mechanisms and potential therapeutic strategies. -
HCV Inhibitor
Roseoside is a potent inhibitor targeting the HCV NS5A/B replicase, demonstrating an IC50 of 20 μM. This compound effectively interferes with HCV RNA replication in vitro and exhibits antibacterial properties against both Gram-positive and Gram-negative bacteria, as well as antifungal activity against Candida albicans. Roseoside serves as a valuable research tool for investigating bacterial infections, candidiasis, and Hepatitis A and C virus mechanisms, while demonstrating no cytotoxic effects in human systems. -
Antifungal Inhibitor
Hunnemanine is a protoberberine-type isoquinoline alkaloid that acts as a potent antifungal inhibitor. At a concentration of 1000 ppm, it effectively prevents the spore germination of various phytopathogenic fungi, including Alternaria brassicae, Helminthosporium pennisetti, and Fusarium lini. This compound is valuable for research on the infection mechanisms of phytopathogenic fungi and the development of related control strategies. -
Lanosterol Synthase Inhibitor
Lanopylin A2 is a potent inhibitor of lanosterol synthase (EC 5.4.99.7), demonstrating an IC50 of 18 μM. Its primary mechanism targets the biosynthetic pathway of sterols, making it a valuable tool for studying cholesterol biosynthesis and related metabolic processes. Lanopylin A2 is particularly useful in research involving fungal biochemistry and the development of antifungal therapies.

