Date published: 2025-10-25

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TMEM135 Activators

TMEM135 Activators encompasses a range of chemical compounds that may indirectly affect the activity of TMEM135 by modulating mitochondrial function and dynamics. These compounds could have the to upregulate TMEM135 through various mechanisms. Mitoquinone mesylate, for example, is a targeted antioxidant that could help maintain mitochondrial integrity, thereby creating a cellular environment that supports TMEM135 function. Similarly, compounds that serve as precursors or coenzymes within the mitochondria, such as NMN and Coenzyme Q10, are crucial for maintaining the organelle's health and could indirectly enhance the activity or expression of TMEM135.

Activation of transcription factors and enzymes associated with mitochondrial biogenesis, like PGC-1α and SIRT1, through specific activators like CAY10566 and SRT1720, respectively, represents another strategy to increase TMEM135 levels. Such compounds do not interact directly with TMEM135 but instead promote a cellular state that is conducive to the protein's function or expression. By fostering a robust mitochondrial network, these activators indirectly contribute to the stabilization and proper functioning of TMEM135 within the cellular framework. The ability of these activators to influence TMEM135 is contingent upon the intricate network of mitochondrial signaling pathways. The overall health and dynamics of mitochondria within the cell are pivotal for the functioning of TMEM135. Therefore, compounds that enhance mitochondrial biogenesis, improve antioxidant defenses, and support the mitochondrial electron transport chain are crucial in maintaining a cellular environment that can support the function and stability of TMEM135. These activators thus represent a chemically diverse yet functionally cohesive group aimed at optimizing mitochondrial performance and, by extension, upregulating TMEM135 activity.

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Items 1 to 10 of 11 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Mito-Q

444890-41-9sc-507441
5 mg
$284.00
(0)

Targets mitochondria and may enhance mitochondrial function, potentially upregulating TMEM135.

β-Nicotinamide mononucleotide

1094-61-7sc-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
(1)

A precursor to NAD+, NMN can support mitochondrial health, possibly affecting TMEM135 activity.

CAY 10566

944808-88-2sc-205109
sc-205109A
sc-205109B
1 mg
5 mg
25 mg
$115.00
$502.00
$1497.00
4
(1)

Enhances expression of PGC-1α, which is a coactivator of mitochondrial biogenesis; this can increase TMEM135 levels.

SRT1720

1001645-58-4sc-364624
sc-364624A
5 mg
10 mg
$193.00
$357.00
13
(1)

Activates SIRT1, which is involved in mitochondrial function, potentially influencing TMEM135.

(−)-Epigallocatechin Gallate

989-51-5sc-200802
sc-200802A
sc-200802B
sc-200802C
sc-200802D
sc-200802E
10 mg
50 mg
100 mg
500 mg
1 g
10 g
$42.00
$72.00
$124.00
$238.00
$520.00
$1234.00
11
(1)

Green tea polyphenol that might enhance mitochondrial biogenesis, possibly affecting TMEM135.

Coenzyme Q10

303-98-0sc-205262
sc-205262A
1 g
5 g
$70.00
$180.00
1
(1)

Essential for mitochondrial electron transport, which could stabilize mitochondrial membranes and affect TMEM135.

α-Lipoic Acid

1077-28-7sc-202032
sc-202032A
sc-202032B
sc-202032C
sc-202032D
5 g
10 g
250 g
500 g
1 kg
$68.00
$120.00
$208.00
$373.00
$702.00
3
(1)

Mitochondrial compound that can improve mitochondrial function and potentially influence TMEM135.

Bezafibrate

41859-67-0sc-204650B
sc-204650
sc-204650A
sc-204650C
500 mg
1 g
5 g
10 g
$30.00
$45.00
$120.00
$200.00
5
(1)

PPAR activator that may promote mitochondrial biogenesis, thereby affecting TMEM135 levels.

N-Acetyl-L-cysteine

616-91-1sc-202232
sc-202232A
sc-202232C
sc-202232B
5 g
25 g
1 kg
100 g
$33.00
$73.00
$265.00
$112.00
34
(1)

Antioxidant that supports mitochondrial function, potentially affecting TMEM135.

Creatine monohydrate

6020-87-7sc-257262
sc-257262A
100 g
1 kg
$43.00
$122.00
(0)

Supports energy metabolism in cells, which could indirectly upregulate TMEM135.