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冠状病毒MHV - A59的N端开放阅读框1a蛋白的细胞内加工需要多个蛋白水解事件。

Intracellular processing of the N-terminal ORF 1a proteins of the coronavirus MHV-A59 requires multiple proteolytic events.

作者信息

Denison M R, Zoltick P W, Hughes S A, Giangreco B, Olson A L, Perlman S, Leibowitz J L, Weiss S R

机构信息

Department of Pediatrics, Jefferson Medical College of Thomas Jefferson University, Philadelphia, Pennsylvania 19107.

出版信息

Virology. 1992 Jul;189(1):274-84. doi: 10.1016/0042-6822(92)90703-r.

Abstract

Several polypeptide products of MHV-A59 ORF 1a were characterized in MHV-A59 infected DBT cells, using antisera directed against fusion proteins encoded in the first 6.5 kb of ORF1a. These included the previously identified N-terminal ORF 1a product, p28, as well as 290-, 240-, and 50-kDa polypeptides. P28 was always detected as a discrete band without larger precursors, suggesting rapid cleavage of p28 immediately after its synthesis. Once p28 was cleaved there was little degradation of the protein over a 2-hr period. The intracellular cleavage of p28 was not inhibited by the protease inhibitor leupeptin, in contrast to results obtained during in vitro translation of genome RNA (Denison and Perlman, 1986). These data suggest that different protease activities may be responsible for the cleavage of p28 in vitro and in vivo. The 290-kDa protein was an intermediate cleavage product derived from a precursor of greater than 400 kDa. The 290-kDa product was subsequently cleaved into secondary products of 50 and 240 kDa. The intracellular cleavage of the 290-kDa polypeptide was inhibited by leupeptin at concentrations which did not inhibit the early cleavage of p28 or the cleavage of the 290-kDa product from its larger polyprotein precursor. In the presence of zinc chloride, a product of greater than 320 kDa was detected, which appears to incorporate p28 at its amino terminus. This suggests that at least two protease activities may be necessary for processing of ORF1a proteins, one of which cleaves p28 and is sensitive to zinc chloride but resistant to leupeptin, and the other which cleaves the 290-kDa precursor and is sensitive to both inhibitors. Both the 290- and 240-kDa proteins should contain sequences predicted to encode two papain-like protease activities.

摘要

利用针对ORF1a前6.5kb编码的融合蛋白的抗血清,在感染MHV - A59的DBT细胞中对MHV - A59 ORF 1a的几种多肽产物进行了表征。这些产物包括先前鉴定的N端ORF 1a产物p28,以及290kDa、240kDa和50kDa的多肽。p28总是被检测为一条离散条带,没有更大的前体,这表明p28在合成后立即快速切割。一旦p28被切割,在2小时内该蛋白几乎没有降解。与基因组RNA体外翻译的结果相反(丹尼森和珀尔曼,1986年),蛋白酶抑制剂亮肽素不抑制p28的细胞内切割。这些数据表明,体外和体内p28的切割可能由不同的蛋白酶活性负责。290kDa的蛋白是一种中间切割产物,来源于大于400kDa的前体。290kDa的产物随后被切割成50kDa和240kDa的二级产物。亮肽素在不抑制p28早期切割或290kDa产物从其更大的多蛋白前体切割的浓度下,抑制290kDa多肽的细胞内切割。在氯化锌存在下,检测到大于320kDa的产物,并显示在其氨基末端掺入了p28。这表明ORF1a蛋白的加工可能至少需要两种蛋白酶活性,其中一种切割p28,对氯化锌敏感但对亮肽素耐药,另一种切割290kDa前体,对两种抑制剂均敏感。290kDa和240kDa的蛋白都应包含预测编码两种木瓜蛋白酶样蛋白酶活性的序列。

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