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猫免疫缺陷病毒Gag和Pol多聚蛋白中蛋白水解加工位点的鉴定

Identification of proteolytic processing sites within the Gag and Pol polyproteins of feline immunodeficiency virus.

作者信息

Elder J H, Schnölzer M, Hasselkus-Light C S, Henson M, Lerner D A, Phillips T R, Wagaman P C, Kent S B

机构信息

Department of Molecular Biology, Scripps Research Institute, La Jolla 92037.

出版信息

J Virol. 1993 Apr;67(4):1869-76. doi: 10.1128/JVI.67.4.1869-1876.1993.

Abstract

N-terminal amino acid sequencing, ion spray mass spectrometry, and cleavage of synthetic peptide substrates were used to identify the N and C termini of the mature Gag and Pol proteins of feline immunodeficiency virus (FIV). The Gag polyprotein encodes matrix (MA), capsid (CA), and nucleocapsid (NC) proteins. The Gag-Pol polyprotein encodes, in addition to the above proteins, protease (PR), reverse transcriptase (RT), dUTPase (DU), and integrase (IN). Secondary cleavage of RT at Trp-595-Tyr-596 of Pol yields a truncated form lacking the C-terminal RNase H domain. The observed and expected molecular masses of the viral proteins were in agreement, with three exceptions. (i) The molecular mass of MA was 14,735 Da, compared with a predicted mass of 14,649 Da, based on a single cleavage at Tyr-135-Pro-136 of Gag. The observed molecular mass is consistent with myristoylation of MA, which was confirmed by metabolic labeling of FIV MA with [3H]myristic acid. (ii) The N terminus of the NC protein is generated via cleavage at Gln-366-Val-367 of Gag, which predicts a mass of 25,523 for CA and 9,101 for the major form of NC. The observed mass of CA was 24,569, consistent with loss of nine C-terminal amino acids by a second cleavage of CA at Leu-357-Leu-358. Synthetic FIV protease accurately cleaved synthetic peptide substrates containing this site. (iii) The actual mass of NC (7,120 Da) was approximately 2 kDa smaller than the mass predicted by synthesis to the stop codon at the end of Gag (9,101 Da). Experiments are in progress to characterize additional cleavage(s) in NC.

摘要

采用N端氨基酸测序、离子喷雾质谱分析法以及合成肽底物切割法,来鉴定猫免疫缺陷病毒(FIV)成熟Gag和Pol蛋白的N端和C端。Gag多聚蛋白编码基质(MA)、衣壳(CA)和核衣壳(NC)蛋白。Gag-Pol多聚蛋白除了编码上述蛋白外,还编码蛋白酶(PR)、逆转录酶(RT)、dUTP酶(DU)和整合酶(IN)。Pol的RT在Trp-595-Tyr-596处的二次切割产生了一种缺少C端核糖核酸酶H结构域的截短形式。病毒蛋白的观察分子量与预期分子量相符,但有三个例外。(i)MA的分子量为14,735道尔顿,而根据Gag在Tyr-135-Pro-136处的单次切割预测的分子量为14,649道尔顿。观察到的分子量与MA的肉豆蔻酰化一致,这通过用[3H]肉豆蔻酸对FIV MA进行代谢标记得到了证实。(ii)NC蛋白的N端是通过Gag在Gln-366-Val-367处的切割产生的,这预测CA的分子量为25,523,NC的主要形式的分子量为9,101。观察到的CA分子量为24,569,这与CA在Leu-357-Leu-358处的二次切割导致九个C端氨基酸缺失一致。合成的FIV蛋白酶能准确切割含有该位点的合成肽底物。(iii)NC的实际分子量(7,120道尔顿)比根据Gag末端的终止密码子合成预测的分子量(9,101道尔顿)小约2千道尔顿。正在进行实验以表征NC中的其他切割情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aabd/240254/5f0734ce2621/jvirol00025-0138-a.jpg

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