TMEM70 inhibitors represent a chemical class that targets the transmembrane protein TMEM70, which plays a critical role in mitochondrial function, specifically in the assembly and stability of the ATP synthase complex. This enzyme complex is a key player in the process of oxidative phosphorylation, responsible for producing ATP, the primary energy currency in cells. TMEM70 is involved in the structural organization of this enzyme, and its inhibition can disrupt the efficient assembly or function of ATP synthase, which may lead to alterations in cellular energy homeostasis. These inhibitors are generally small molecules designed to bind to specific sites on TMEM70, interfering with its ability to maintain ATP synthase integrity. This interference can impact the proton gradient across the mitochondrial membrane, a fundamental process in the production of ATP.
The study of TMEM70 inhibitors has garnered attention in biochemical and cellular research due to their capacity to modulate mitochondrial energy pathways. By inhibiting TMEM70, researchers can gain insights into the regulation of ATP synthase and the broader effects of mitochondrial dysfunction. This class of inhibitors is crucial for studying the intricacies of mitochondrial dynamics, energy metabolism, and the roles of other mitochondrial proteins in bioenergetics. Moreover, TMEM70 inhibitors serve as valuable tools in examining how cells adapt to altered energy production and how metabolic pathways respond to perturbations in mitochondrial activity. These investigations provide a deeper understanding of the biochemical processes that govern cellular respiration and energy balance.
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
Oligomycin A | 579-13-5 | sc-201551 sc-201551A sc-201551B sc-201551C sc-201551D | 5 mg 25 mg 100 mg 500 mg 1 g | $175.00 $600.00 $1179.00 $5100.00 $9180.00 | 26 | |
Inhibits mitochondrial ATP synthase by binding to the F0 subunit, indirectly affecting TMEM70-related processes. | ||||||
Resveratrol | 501-36-0 | sc-200808 sc-200808A sc-200808B | 100 mg 500 mg 5 g | $60.00 $185.00 $365.00 | 64 | |
Has been shown to influence mitochondrial function and can indirectly impact ATP synthesis and TMEM70 activity. | ||||||
AICAR | 2627-69-2 | sc-200659 sc-200659A sc-200659B | 50 mg 250 mg 1 g | $60.00 $270.00 $350.00 | 48 | |
AICAR activates AMPK, a master regulator of energy homeostasis, potentially leading to increased TMEM70 expression in response to energetic demands. | ||||||
Bongkrekic acid | 11076-19-0 | sc-205606 | 100 µg | $418.00 | 10 | |
Targets the adenine nucleotide translocator (ANT) in mitochondria, impacting ATP synthesis and potentially influencing TMEM70 function. | ||||||
Metformin | 657-24-9 | sc-507370 | 10 mg | $77.00 | 2 | |
Metformin activates AMPK pathways, which may promote mitochondrial biogenesis and possibly increase TMEM70 expression for efficient ATP synthesis. | ||||||
β-Nicotinamide mononucleotide | 1094-61-7 | sc-212376 sc-212376A sc-212376B sc-212376C sc-212376D | 25 mg 100 mg 1 g 2 g 5 g | $92.00 $269.00 $337.00 $510.00 $969.00 | 4 | |
NMN enhances NAD+ biosynthesis, supporting SIRT1 activity and potentially upregulating TMEM70 during mitochondrial biogenesis. | ||||||
Rotenone | 83-79-4 | sc-203242 sc-203242A | 1 g 5 g | $89.00 $254.00 | 41 | |
Inhibits mitochondrial complex I, leading to reduced ATP synthesis, indirectly affecting TMEM70. | ||||||
Bezafibrate | 41859-67-0 | sc-204650B sc-204650 sc-204650A sc-204650C | 500 mg 1 g 5 g 10 g | $30.00 $45.00 $120.00 $200.00 | 5 | |
As a PPAR agonist, bezafibrate may upregulate TMEM70 expression by enhancing fatty acid metabolism and mitochondrial function. | ||||||
Antimycin A | 1397-94-0 | sc-202467 sc-202467A sc-202467B sc-202467C | 5 mg 10 mg 1 g 3 g | $54.00 $62.00 $1642.00 $4600.00 | 51 | |
Targets mitochondrial complex III, disrupting electron transport and ATP synthesis, indirectly affecting TMEM70. | ||||||
Pioglitazone | 111025-46-8 | sc-202289 sc-202289A | 1 mg 5 mg | $54.00 $123.00 | 13 | |
By activating PPARγ, pioglitazone could enhance mitochondrial function and indirectly upregulate TMEM70 expression. | ||||||