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首页> 外文期刊>Developmental biology >CPEB degradation during Xenogus oocyte maturation requires a PEST domainand the 26S proteasome
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CPEB degradation during Xenogus oocyte maturation requires a PEST domainand the 26S proteasome

机译:Xenogus卵母细胞成熟过程中的CPEB降解需要PEST域和26S蛋白酶体。

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摘要

Cytoplasmic poly(A) elongation is widely utilized during the early development of many organisms as a mechanism for translational activation. Targeting of mRNAs for this mechanism requires the presence of a U-rich element, the cytoplasmic polyadenylation element (CPE), and its binding protein, CPEB. Blocking cytoplasmic polyadenylation by interfering with the CPE or CPEB prevents the translational activation of mRNAs that are crucial for oocyte maturation. The CPE sequence and CPEB are also important for translational repression of mRNAs stored in the Xenopus oocyte during oogenesis. To understand the contribution of protein metabolism to these two roles for CPEB, rye have examined the mechanisms influencing the expression of CPEB during oogenesis and oocyte maturation. Through a comparison of CPEB mRNA levels, protein synthesis, and accumulation, we find that CPEB is synthesized during oogenesis and stockpiled in the oocyte. Minimal synthesis of CPEB, <3.6%, occurs during oocyte maturation. In late oocyte maturation, 75% of CPEB is degraded coincident with germinal vesicle breakdown. Using proteasome and ubiquitination inhibitors, we demonstrate that CPEB degradation occurs via the proteasome pathway, most likely through ubiquitin-conjugated intermediates. In addition, we demonstrate that degradation requires a 14 amino acid PEST domain. <(c)> 2001 Academic Press.
机译:细胞质多聚(A)伸长在许多生物体的早期发育过程中被广泛用作翻译激活的机制。针对这种机制的mRNA靶向需要存在一个富含U的元件,胞质聚腺苷酸化元件(CPE)及其结合蛋白CPEB。通过干扰CPE或CPEB来阻止细胞质聚腺苷酸化,可阻止对卵母细胞成熟至关重要的mRNA的翻译激活。 CPE序列和CPEB对在卵子发生过程中储存在非洲爪蟾卵母细胞中的mRNA的翻译抑制也很重要。为了了解蛋白质代谢在CPEB的这两个角色中的作用,黑麦研究了在卵子发生和卵母细胞成熟过程中影响CPEB表达的机制。通过比较CPEB mRNA水平,蛋白质合成和积累,我们发现CPEB在卵子发生过程中合成并储存在卵母细胞中。在卵母细胞成熟期间,CPEB的最低合成量<3.6%。在卵母细胞成熟后期,CPEB的75%降解与生小泡破裂同时发生。使用蛋白酶体和泛素化抑制剂,我们证明CPEB降解是通过蛋白酶体途径发生的,最有可能是通过泛素结合的中间体而发生的。此外,我们证明降解需要一个14个氨基酸的PEST域。 <(c)> 2001年学术出版社。

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