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可溶性包膜片段激活C型哺乳动物逆转录病毒共有的细胞进入途径。

Activation of a cell entry pathway common to type C mammalian retroviruses by soluble envelope fragments.

作者信息

Lavillette D, Ruggieri A, Russell S J, Cosset F L

机构信息

Laboratoire de Vectorologie Rétrovirale et Thérapie Génique, Unité de Virologie Humaine, INSERM U412, Ecole Normale Supérieure de Lyon, Lyon, France.

出版信息

J Virol. 2000 Jan;74(1):295-304. doi: 10.1128/jvi.74.1.295-304.2000.

Abstract

Mutations that negatively or positively affect the fusion properties of murine leukemia viruses (MLVs) have been found within all subdomains of their SU (surface) and TM (transmembrane) envelope units. Yet, the interrelations between these different regions of the envelope complex during the cell entry process are still elusive. Deletion of the histidine residue of the conserved PHQV motif at the amino terminus of the amphotropic or the ecotropic MLV SU resulted in the AdelH or the MOdelH fusion-defective mutant envelope, respectively. These delH mutant envelopes are incorporated on retroviral particles at normal densities and normally mediate virion binding to cells expressing the retroviral receptors. However, both their cell-cell and virus-cell fusogenicities were fully prevented at an early postbinding stage. We show here that the fusion defect of AdelH or MOdelH envelopes was also almost completely reverted by providing either soluble SU or a polypeptide encompassing the receptor-binding domain (RBD) to the target cells, provided that the integrity of the amino-terminal end of either polypeptide was preserved. Restoration of delH envelope fusogenicity was caused by activation of the target cells via specific interaction of the latter polypeptides with the retrovirus receptor rather than by their association with the delH envelope complexes. Moreover crossactivation of the target cells, leading to fusion activation of AdelH or MOdelH envelopes, was achieved by polypeptides containing various type C mammalian retrovirus RBDs, irrespective of the type of entry-defective glycoprotein that was used for infection. Our results indicate that although they recognize different receptors for binding to the cell surface, type C mammalian retroviruses use a common entry pathway which is activated by a conserved feature of their envelope glycoproteins.

摘要

已在鼠白血病病毒(MLV)表面(SU)和跨膜(TM)包膜单位的所有亚结构域中发现了对其融合特性有负面或正面影响的突变。然而,在细胞进入过程中,包膜复合体这些不同区域之间的相互关系仍不清楚。删除嗜异性或嗜亲性MLV SU氨基末端保守的PHQV基序中的组氨酸残基,分别产生了AdelH或MOdelH融合缺陷型突变包膜。这些delH突变包膜以正常密度整合到逆转录病毒颗粒上,并正常介导病毒粒子与表达逆转录病毒受体的细胞结合。然而,在结合后的早期阶段,它们的细胞 - 细胞和病毒 - 细胞融合能力都被完全抑制。我们在此表明,如果保留任何一种多肽氨基末端的完整性,通过向靶细胞提供可溶性SU或包含受体结合域(RBD)的多肽,AdelH或MOdelH包膜的融合缺陷也几乎能完全恢复。delH包膜融合能力的恢复是由后一种多肽与逆转录病毒受体的特异性相互作用激活靶细胞所致,而非它们与delH包膜复合体的结合。此外,含有各种C型哺乳动物逆转录病毒RBD的多肽可实现靶细胞的交叉激活,从而导致AdelH或MOdelH包膜的融合激活,而与用于感染的进入缺陷型糖蛋白类型无关。我们的结果表明,尽管C型哺乳动物逆转录病毒识别不同的受体以结合细胞表面,但它们使用共同的进入途径,该途径由其包膜糖蛋白的保守特征激活。

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