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基孔肯雅病毒及其移码变体的病毒孔蛋白不同膜活性的机制洞察

Mechanistic Insights into the Divergent Membrane Activities of a Viroporin from Chikungunya Virus and Its Transframe Variant.

作者信息

Suhag Kirti, Borkotoky Subhomoi, Siddiqui Shumaila Iqbal, Kumar Jitender, Kumar Chandra Shekhar, Tatiya Pushkar, Ghosh Subhendu, Banerjee Manidipa

机构信息

Kusuma School of Biological Sciences, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

Department of Biophysics, University of Delhi South Campus, Benito Juarez Road, New Delhi 110021, India.

出版信息

ACS Infect Dis. 2025 Feb 14;11(2):430-441. doi: 10.1021/acsinfecdis.4c00562. Epub 2025 Jan 2.

Abstract

Alphaviruses, a genus of vector-borne viruses in the family, encode a small ion-channel-forming protein, 6K, and its transframe variant (TF) during infections. Although 6K/TF have vital roles in glycoprotein transport, virus assembly, and budding, there is no mechanistic explanation for these functions. We investigated the distinct biochemical functionalities of 6K and TF from the mosquito-borne alphavirus, Chikungunya Virus. We show that like 6K, TF is also capable of forming ion channels in bilayer membranes. The assemblies formed by 6K in membranes are structurally more complex and potentially more ion-restrictive than those formed by TF. Both 6K and TF show strong affinity toward the ER membranes, indicating that the localization of these components at the plasma membrane, as previously reported, is either linked to post-translational modification or mediated through interaction with binding partners. These structural and functional insights may elucidate the distinct roles of 6K and TF in the alphavirus life cycle.

摘要

甲病毒属是该科中一类由媒介传播的病毒,在感染过程中编码一种形成小离子通道的蛋白6K及其移码变体(TF)。尽管6K/TF在糖蛋白运输、病毒组装和出芽过程中起着至关重要的作用,但对于这些功能尚无机制上的解释。我们研究了来自蚊媒甲病毒——基孔肯雅病毒的6K和TF独特的生化功能。我们发现,与6K一样,TF也能够在双层膜中形成离子通道。6K在膜中形成的聚集体在结构上比TF形成的聚集体更复杂,并且可能对离子的限制更大。6K和TF都对内质网(ER)膜表现出强烈的亲和力,这表明如先前报道的那样,这些组分在质膜上的定位要么与翻译后修饰有关,要么是通过与结合伴侣的相互作用介导的。这些结构和功能上的见解可能阐明6K和TF在甲病毒生命周期中的不同作用。

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