Ribosomal Protein L35A inhibitors are a class of chemical compounds that target and inhibit the activity of Ribosomal Protein L35A, an integral part of the large subunit of the ribosome. RPL35A is essential for the proper assembly and structural stability of the ribosome, playing a critical role in protein synthesis. Located near the peptidyl transferase center, this protein helps in maintaining the correct orientation of ribosomal RNA (rRNA) and transfer RNA (tRNA) during the translation process. Inhibitors of RPL35A typically work by interfering with its binding sites or by disrupting its interactions with other ribosomal components, which can compromise the structural integrity and functional capacity of the ribosome.
The inhibition of Ribosomal Protein L35A has significant effects on the ribosome's ability to carry out protein synthesis, leading to defects in translation elongation and, ultimately, reduced production of functional proteins within the cell. These inhibitors are useful tools for researchers studying the fundamental mechanisms of translation, as they provide a means to explore the role of RPL35A in ribosomal function and its contribution to the overall dynamics of the ribosome. By targeting this specific ribosomal protein, scientists can better understand how structural components within the ribosome coordinate to ensure efficient and accurate protein synthesis. Moreover, these inhibitors serve as molecular probes for investigating the structural and functional diversity of ribosomes across different species, shedding light on the evolutionary conservation and divergence of ribosomal proteins. Through their targeted disruption of RPL35A, these compounds offer a window into the complexities of translational regulation and the molecular machinery governing cellular protein production.
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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 | $74.00 $243.00 $731.00 $2572.00 $21848.00 | 53 | |
Actinomycin D binds to DNA and inhibits RNA synthesis, possibly affecting the transcription of RPL35A. | ||||||
Cycloheximide | 66-81-9 | sc-3508B sc-3508 sc-3508A | 100 mg 1 g 5 g | $41.00 $84.00 $275.00 | 127 | |
Cycloheximide inhibits protein synthesis by blocking translocation, potentially reducing RPL35A protein levels. | ||||||
Puromycin | 53-79-2 | sc-205821 sc-205821A | 10 mg 25 mg | $166.00 $322.00 | 436 | |
Puromycin causes premature chain termination during translation, potentially affecting RPL35A synthesis. | ||||||
Fluorouracil | 51-21-8 | sc-29060 sc-29060A | 1 g 5 g | $37.00 $152.00 | 11 | |
Fluorouracil interferes with RNA synthesis, possibly affecting the transcription and translation of RPL35A. | ||||||
Rapamycin | 53123-88-9 | sc-3504 sc-3504A sc-3504B | 1 mg 5 mg 25 mg | $63.00 $158.00 $326.00 | 233 | |
Rapamycin inhibits mTOR, a regulator of protein synthesis, possibly affecting RPL35A expression. | ||||||
Mycophenolic acid | 24280-93-1 | sc-200110 sc-200110A | 100 mg 500 mg | $69.00 $266.00 | 8 | |
Mycophenolic acid inhibits inosine monophosphate dehydrogenase, potentially affecting RNA synthesis and RPL35A expression. | ||||||
Anisomycin | 22862-76-6 | sc-3524 sc-3524A | 5 mg 50 mg | $99.00 $259.00 | 36 | |
Anisomycin inhibits protein synthesis by blocking peptide bond formation, possibly affecting RPL35A synthesis. | ||||||
Harringtonin | 26833-85-2 | sc-204771 sc-204771A sc-204771B sc-204771C sc-204771D | 5 mg 10 mg 25 mg 50 mg 100 mg | $250.00 $367.00 $548.00 $730.00 $980.00 | 30 | |
Harringtonin inhibits protein synthesis by affecting the elongation phase, possibly influencing RPL35A levels. | ||||||
Geldanamycin | 30562-34-6 | sc-200617B sc-200617C sc-200617 sc-200617A | 100 µg 500 µg 1 mg 5 mg | $39.00 $59.00 $104.00 $206.00 | 8 | |
Geldanamycin binds to Hsp90, possibly affecting its client proteins, including those involved in ribosome biogenesis and function. | ||||||
Mitoxantrone | 65271-80-9 | sc-207888 | 100 mg | $285.00 | 8 | |
Mitoxantrone intercalates into DNA, affecting RNA synthesis, possibly influencing RPL35A transcription. | ||||||