PABPC3, or Poly(A) Binding Protein Cytoplasmic 3, is a part of the poly(A) binding protein family. This family is known for its essential role in polyadenylation and the translation of eukaryotic mRNAs. PABPC3, like other family members, binds to the poly(A) tail of mRNA, facilitating its stability and playing a role in the initiation of protein synthesis. The poly(A) tail is a characteristic feature of mature mRNAs, and it protects mRNA from degradation, aids in nuclear export, and is involved in translation initiation. PABPC3's function, by virtue of its ability to bind to poly(A) tails, is critical for maintaining mRNA stability and ensuring effective protein synthesis within cells.
PABPC3 Activators are molecules or compounds designed to enhance or upregulate the activity of PABPC3. By bolstering the function of PABPC3, these activators could amplify the stabilization of mRNAs and optimize the translation process. Since PABPC3's primary function is related to mRNA stability and translation, activators targeting this protein might lead to an increased rate of protein synthesis, thereby influencing various cellular processes governed by the translated proteins. When considering the development or identification of PABPC3 activators, it would be crucial to understand the protein's binding dynamics, interactions with mRNA, and its influence on the translation initiation complex. Such knowledge would guide the design of molecules that can specifically and efficiently augment PABPC3's activity. Given the fundamental role of mRNA in cellular function, modulating the activity of proteins like PABPC3 offers an intriguing avenue for understanding and manipulating cellular behavior at the molecular level.
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
Actinomycin D | 50-76-0 | sc-200906 sc-200906A sc-200906B sc-200906C sc-200906D | 5 mg 25 mg 100 mg 1 g 10 g | $73.00 $238.00 $717.00 $2522.00 $21420.00 | 53 | |
Known to intercalate into DNA, inhibiting RNA synthesis. This might affect the overall mRNA pool and potentially influence PABPC3 expression indirectly. | ||||||
Mithramycin A | 18378-89-7 | sc-200909 | 1 mg | $54.00 | 6 | |
Binds to DNA and inhibits transcription. This can alter the expression of several genes, possibly including PABPC3. | ||||||
Leptomycin B | 87081-35-4 | sc-358688 sc-358688A sc-358688B | 50 µg 500 µg 2.5 mg | $105.00 $408.00 $1224.00 | 35 | |
Inhibits nuclear export, which could influence the cytoplasmic levels of various mRNAs and proteins, including PABPC3. | ||||||
Rapamycin | 53123-88-9 | sc-3504 sc-3504A sc-3504B | 1 mg 5 mg 25 mg | $62.00 $155.00 $320.00 | 233 | |
An mTOR inhibitor which can affect protein synthesis. Given PABPC3's role in mRNA translation, mTOR signaling might influence its expression. | ||||||
Fluorouracil | 51-21-8 | sc-29060 sc-29060A | 1 g 5 g | $36.00 $149.00 | 11 | |
Affects RNA processing and function, which might indirectly influence PABPC3 expression. | ||||||
Anisomycin | 22862-76-6 | sc-3524 sc-3524A | 5 mg 50 mg | $97.00 $254.00 | 36 | |
Protein synthesis inhibitor which might affect PABPC3 levels indirectly given its role in mRNA translation. | ||||||
Puromycin dihydrochloride | 58-58-2 | sc-108071 sc-108071B sc-108071C sc-108071A | 25 mg 250 mg 1 g 50 mg | $40.00 $210.00 $816.00 $65.00 | 394 | |
Incorporates into growing polypeptide chains, causing premature termination. This could influence proteins involved in mRNA metabolism, including PABPC3. | ||||||
2-Deoxy-D-glucose | 154-17-6 | sc-202010 sc-202010A | 1 g 5 g | $65.00 $210.00 | 26 | |
Inhibits glycolysis and can affect various cellular processes, including mRNA metabolism, potentially impacting PABPC3 expression. | ||||||
α-Amanitin | 23109-05-9 | sc-202440 sc-202440A | 1 mg 5 mg | $260.00 $1029.00 | 26 | |
A potent inhibitor of RNA polymerase II, which could reduce the expression of various genes, possibly including PABPC3. | ||||||
Wortmannin | 19545-26-7 | sc-3505 sc-3505A sc-3505B | 1 mg 5 mg 20 mg | $66.00 $219.00 $417.00 | 97 | |
PI3 kinase inhibitor, affecting various cellular pathways including protein synthesis, which might indirectly influence PABPC3. | ||||||