Molecular characterization and intermolecular interaction of coat protein of Prunus necrotic ringspot virus: implications for virus assembly.

Indian Journal of Virology Pub Date : 2013-09-01 Epub Date: 2013-06-14 DOI:10.1007/s13337-013-0140-5
Saurabh Kulshrestha, Vipin Hallan, Anshul Sharma, Chandrika Attri Seth, Anjali Chauhan, Aijaz Asghar Zaidi
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引用次数: 8

Abstract

Coat protein (CP) and RNA3 from Prunus necrotic ringspot virus (PNRSV-rose), the most prevalent virus infecting rose in India, were characterized and regions in the coat protein important for self-interaction, during dimer formation were identified. The sequence analysis of CP and partial RNA 3 revealed that the rose isolate of PNRSV in India belongs to PV-32 group of PNRSV isolates. Apart from the already established group specific features of PV-32 group member's additional group-specific and host specific features were also identified. Presence of methionine at position 90 in the amino acid sequence alignment of PNRSV CP gene (belonging to PV-32 group) was identified as the specific conserved feature for the rose isolates of PNRSV. As protein-protein interaction plays a vital role in the infection process, an attempt was made to identify the portions of PNRSV CP responsible for self-interaction using yeast two-hybrid system. It was found (after analysis of the deletion clones) that the C-terminal region of PNRSV CP (amino acids 153-226) plays a vital role in this interaction during dimer formation. N-terminal of PNRSV CP is previously known to be involved in CP-RNA interactions, but our results also suggested that N-terminal of PNRSV CP represented by amino acids 1-77 also interacts with C-terminal (amino acids 153-226) in yeast two-hybrid system, suggesting its probable involvement in the CP-CP interaction.

李树坏死环斑病毒外壳蛋白的分子特征及分子间相互作用:对病毒组装的意义。
对印度最流行的桃李坏死环斑病毒(PNRSV-rose)的外壳蛋白(CP)和RNA3进行了鉴定,并鉴定了二聚体形成过程中外壳蛋白中重要的自相互作用区域。CP和部分RNA 3序列分析表明,印度玫瑰分离株属于PNRSV分离株PV-32群。除了已经确定的PV-32组成员的组特有特征外,还确定了其他组特有特征和主机特有特征。PNRSV CP基因(属于PV-32群)氨基酸序列比对中第90位存在蛋氨酸是玫瑰分离株PNRSV特异性保守特征。由于蛋白-蛋白相互作用在感染过程中起着至关重要的作用,我们尝试利用酵母双杂交系统鉴定PNRSV CP中负责自相互作用的部分。通过对缺失克隆的分析,我们发现PNRSV CP的c端区域(氨基酸153-226)在二聚体形成过程中起着至关重要的作用。先前已知PNRSV CP的n端参与CP- rna相互作用,但我们的研究结果也表明,在酵母双杂交系统中,以氨基酸1-77为代表的PNRSV CP的n端也与c端(氨基酸153-226)相互作用,提示其可能参与CP-CP相互作用。
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来源期刊
Indian Journal of Virology
Indian Journal of Virology 医学-病毒学
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6-12 weeks
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