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呼肠孤病毒细胞附着蛋白σ1的生化与生物物理特性:证明其为同三聚体的证据

Biochemical and biophysical characterization of the reovirus cell attachment protein sigma 1: evidence that it is a homotrimer.

作者信息

Strong J E, Leone G, Duncan R, Sharma R K, Lee P W

机构信息

Department of Microbiology and Infectious Diseases, University of Calgary Health Sciences Centre, Alberta, Canada.

出版信息

Virology. 1991 Sep;184(1):23-32. doi: 10.1016/0042-6822(91)90818-v.

Abstract

The oligomerization state of the reovirus cell attachment protein sigma 1 (49K monomeric molecular weight) was determined by biochemical and biophysical means. Full-length (protein product designated A) and C-terminal truncated (protein product designated B) serotype 3 reovirus S1 mRNA transcripts synthesized in vitro were cotranslated in a rabbit reticulocyte lysate, and the products were analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) under conditions which allowed for the identification of oligomeric forms of sigma 1. A total of four oligomeric protein bands (corresponding to A3, A2B1, A1B2, and B3, respectively) was consistently observed, which suggests that the protein is made up of three monomeric subunits. Biophysical characterization of purified sigma 1 using column filtration and sucrose gradient sedimentation analysis confirmed the highly asymmetric shape of sigma 1 and allowed us to determine the molecular weight of the native protein to be approximately 132K (a trimer). Similar biophysical analysis on the two tryptic fragments of the sigma 1 [N-terminal fibrous tail (26K monomeric molecular weight) and the C-terminal globular head (23K monomeric molecular weight)] yielded molecular weights of 77K and 64K, respectively, both again corresponding to trimers. We therefore conclude that protein sigma 1 is a homotrimer and provide, with supportive experimental evidence, a rationale for the anomalous behavior of the oligomeric protein in SDS-polyacrylamide gels, which, coupled with chemical cross-linking studies, has in part led to the previous suggestion that sigma 1 might be a higher order oligomer.

摘要

通过生化和生物物理方法确定了呼肠孤病毒细胞附着蛋白σ1(单体分子量49K)的寡聚化状态。体外合成的3型呼肠孤病毒S1 mRNA全长转录本(蛋白质产物命名为A)和C末端截短的转录本(蛋白质产物命名为B)在兔网织红细胞裂解物中共翻译,产物在能鉴定σ1寡聚形式的条件下通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)进行分析。共始终观察到四条寡聚蛋白带(分别对应于A3、A2B1、A1B2和B3),这表明该蛋白由三个单体亚基组成。使用柱过滤和蔗糖梯度沉降分析对纯化的σ1进行生物物理表征,证实了σ1高度不对称的形状,并使我们能够确定天然蛋白的分子量约为132K(三聚体)。对σ1的两个胰蛋白酶片段[N末端纤维状尾部(单体分子量26K)和C末端球状头部(单体分子量23K)]进行的类似生物物理分析,分别得到分子量为77K和64K,二者同样都对应三聚体。因此,我们得出结论,蛋白σ1是同三聚体,并提供了支持性实验证据,解释了该寡聚蛋白在SDS-聚丙烯酰胺凝胶中异常行为的原因,这与化学交联研究一起,部分导致了之前认为σ1可能是更高阶寡聚体的推测。

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Purification and characterization of the reovirus cell attachment protein sigma 1.
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