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在细胞质中合成的叶绿体核糖体蛋白前体的加工过程分两步进行,其中一步依赖于叶绿体中合成的一种蛋白质。

Processing of the precursor to a chloroplast ribosomal protein made in the cytosol occurs in two steps, one of which depends on a protein made in the chloroplast.

作者信息

Schmidt R J, Gillham N W, Boynton J E

出版信息

Mol Cell Biol. 1985 May;5(5):1093-9. doi: 10.1128/mcb.5.5.1093-1099.1985.

Abstract

In pulse-chase experiments in which log-phase cells of Chlamydomonas reinhardtii were labeled in vivo for 5 min with H2(35)SO4, fluorographs of immunoprecipitates from whole cell extracts revealed that chloroplast ribosomal proteins L-2, L-6, L-21, and L-29, which are made in the cytosol and imported, appeared in their mature forms. However, in the case of chloroplast ribosomal protein L-18, which is also made in the cytoplasm and imported, a prominent precursor with an apparent molecular weight of 17,000 was found at the end of a 5-min pulse. This precursor was processed to its mature size (apparent molecular weight of 15,500) within the first 5 min of the subsequent chase. As determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, the precursor to L-18 formed in vivo was 1.5 kilodaltons smaller than the primary product detected in translations of Chlamydomonas polyadenylated RNA in vitro. Upon a 10-min incubation with a postribosomal supernatant from Chlamydomonas, the 18,500-dalton precursor detected in vitro could be partially converted into a polypeptide that comigrated with the 17,000-dalton precursor detected in extracts of cells labeled in vivo. Under conditions in which the total amounts of chloroplast proteins had been reduced and cells were made to synthesize ribosomes rapidly, the apparent half-life of the 17,000-dalton precursor was extended over that seen in log-phase cells. When chloroplast protein synthesis was inhibited with lincomycin for 3 h before labeling under these conditions, the 17,000-dalton L-18 precursor but not the mature form was found, and the precursor was slowly degraded during a 60-min chase. When cells were placed in the dark for 3 h before labeling, processing of this precursor to the mature form appeared unaffected, but the chloroplast-synthesized ribosomal protein L-26 was detected, indicating that chloroplast protein synthesis was still occurring. We interpret these results to indicate that the maturation of protein L-18 in vivo involves at least two processing steps, one of which depends on a protein made on chloroplast ribosomes.

摘要

在脉冲追踪实验中,用H2(35)SO4对莱茵衣藻对数期细胞进行5分钟的体内标记,全细胞提取物免疫沉淀的荧光自显影片显示,在细胞质中合成并导入的叶绿体核糖体蛋白L-2、L-6、L-21和L-29以成熟形式出现。然而,对于同样在细胞质中合成并导入的叶绿体核糖体蛋白L-18,在5分钟脉冲结束时发现了一种明显分子量为17,000的突出前体。该前体在随后追踪的前5分钟内加工成其成熟大小(明显分子量为15,500)。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳测定,体内形成的L-18前体比在体外莱茵衣藻多聚腺苷酸化RNA翻译中检测到的初级产物小1.5千道尔顿。与莱茵衣藻核糖体后上清液孵育10分钟后,体外检测到的18,500道尔顿前体可部分转化为与体内标记细胞提取物中检测到的17,000道尔顿前体共迁移的多肽。在叶绿体蛋白总量减少且细胞快速合成核糖体的条件下,17,000道尔顿前体的表观半衰期比对数期细胞中的延长。在这些条件下标记前用林可霉素抑制叶绿体蛋白合成3小时,发现了17,000道尔顿的L-18前体而非成熟形式,并且该前体在60分钟的追踪过程中缓慢降解。当细胞在标记前置于黑暗中3小时,该前体加工成成熟形式似乎未受影响,但检测到叶绿体合成的核糖体蛋白L-26,表明叶绿体蛋白合成仍在发生。我们将这些结果解释为表明体内蛋白L-18的成熟涉及至少两个加工步骤,其中一个步骤依赖于叶绿体核糖体上合成的一种蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a29/366826/28486c02a183/molcellb00101-0197-a.jpg

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