Date published: 2026-5-30

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TESSP5 Activators

TESSP5 Activators represent a specialized group of chemical compounds engineered to selectively enhance the activity of TESSP5, a protein whose precise biological functions and roles are subjects of ongoing scientific investigation. TESSP5, also known as C20orf88, belongs to the category of relatively uncharacterized proteins, and its designation as a "C20orf" (Chromosome 20 open reading frame) implies its classification as a protein with an unknown function. The development of TESSP5 Activators signifies a significant research effort aimed at unraveling the protein's functions and potential involvement in cellular processes. These activators are synthesized through intricate chemical engineering processes, with the goal of producing molecules that can specifically interact with TESSP5, potentially modulating its activity or revealing its endogenous ligands. Designing effective TESSP5 Activators necessitates a profound understanding of the protein's structure, including any functional domains or motifs that may be targeted for modulation.

The exploration of TESSP5 Activators encompasses a multidisciplinary research approach, integrating techniques from molecular biology, biochemistry, and structural biology to elucidate how these compounds interact with TESSP5. Scientists employ protein expression and purification methods to obtain TESSP5 for further analysis. Functional assays and cellular experiments are employed to assess the impact of activators on TESSP5-mediated cellular processes or interactions with other molecules. Structural studies, such as X-ray crystallography or cryo-electron microscopy, are pivotal in determining the three-dimensional structure of TESSP5, identifying potential activator binding sites, and elucidating the conformational changes associated with activation. Additionally, computational modeling and molecular docking are essential for predicting the interactions between TESSP5 and potential activators, guiding the rational design and optimization of these molecules for increased specificity and efficacy. Through this comprehensive research endeavor, the study of TESSP5 Activators aims to contribute to our understanding of the protein's function and its potential significance in cellular biology, advancing the field of protein modulation and functional characterization.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Trichostatin A

58880-19-6sc-3511
sc-3511A
sc-3511B
sc-3511C
sc-3511D
1 mg
5 mg
10 mg
25 mg
50 mg
$152.00
$479.00
$632.00
$1223.00
$2132.00
33
(3)

Inhibits histone deacetylases, potentially increasing transcription of some pseudogenes.

5-Aza-2′-Deoxycytidine

2353-33-5sc-202424
sc-202424A
sc-202424B
25 mg
100 mg
250 mg
$218.00
$322.00
$426.00
7
(1)

Inhibits DNA methyltransferases, which may result in the demethylation and transcription of pseudogenes.

Sodium Butyrate

156-54-7sc-202341
sc-202341B
sc-202341A
sc-202341C
250 mg
5 g
25 g
500 g
$31.00
$47.00
$84.00
$222.00
19
(3)

Histone deacetylase inhibitor that might enhance the acetylation of histones, affecting pseudogene transcription.

Suberoylanilide Hydroxamic Acid

149647-78-9sc-220139
sc-220139A
100 mg
500 mg
$133.00
$275.00
37
(2)

Another histone deacetylase inhibitor that can alter chromatin structure and potentially affect pseudogene transcription.

Retinoic Acid, all trans

302-79-4sc-200898
sc-200898A
sc-200898B
sc-200898C
500 mg
5 g
10 g
100 g
$66.00
$325.00
$587.00
$1018.00
28
(1)

Regulates gene expression via retinoic acid receptors and could influence pseudogene transcription.

β-Estradiol

50-28-2sc-204431
sc-204431A
500 mg
5 g
$63.00
$182.00
8
(1)

As a steroid hormone, it can modulate gene transcription and might impact pseudogene expression.

Valproic Acid

99-66-1sc-213144
10 g
$87.00
9
(1)

A histone deacetylase inhibitor that could theoretically increase expression of certain pseudogenes.

Forskolin

66575-29-9sc-3562
sc-3562A
sc-3562B
sc-3562C
sc-3562D
5 mg
50 mg
1 g
2 g
5 g
$78.00
$153.00
$740.00
$1413.00
$2091.00
73
(3)

Activates adenylyl cyclase, increasing cAMP levels, which can modulate various genes' expression.

Mithramycin A

18378-89-7sc-200909
1 mg
$55.00
6
(1)

Binds to G-C rich regions of DNA, potentially affecting transcription of certain pseudogenes.

M 344

251456-60-7sc-203124
sc-203124A
1 mg
5 mg
$109.00
$322.00
8
(1)

Inhibits a transcription factor that might be involved in pseudogene regulation.