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嗜亲性受体的第三个细胞外结构域在莫洛尼鼠白血病病毒感染中的作用。

Role of a third extracellular domain of an ecotropic receptor in Moloney murine leukemia virus infection.

作者信息

Bae Eun Hye, Park Sung-Han, Jung Yong-Tae

机构信息

Department of Microbiology and Institute of Basic Science, Dankook University, Cheonan 330-714, Republic of Korea.

出版信息

J Microbiol. 2006 Aug;44(4):447-52.

Abstract

The murine ecotropic retroviral receptor has been demonstrated to function as a mouse cationic amino acid transporter 1 (mCAT1), and is comprised of multiple membranespanning domains. Feral mouse (Mus dunni) cells are not susceptible to infection by the ecotropic Moloney murine leukemia virus (MoMLV), although they can be infected by other ecotropic murine leukemia viruses, including Friend MLV and Rauscher MLV. The relative inability of MoMLV to replicate in M. dunni cells has been attributed to two amino acids (V214 and G236) located within the third extracellular loop of the M. dunni CAT1 receptor (dCAT1). Via the exchange of the third extracellular loop of the mCAT1 cDNA encoding receptor from the permissive mouse and the corresponding portion of cDNA encoding for the nonpermissive M. dunni receptor, we have identified the most critical amino acid residue, which is a glycine located at position 236 within the third extracellular loop of dCAT1. We also attempted to determine the role of the third extracellular loop of the M. dunni CAT1 receptor with regard to the formation of the syncytium. The relationship between dCAT1 and virus-induced syncytia was suggested initially by our previous identification of two MLV isolates (S82F in Moloney and S84A in Friend MLV), both of which are uniquely cytopathic in M. dunni cells. In an attempt to determine the relationship existing between dCAT1 and the virally-induced syncytia, we infected 293-dCAT1 or chimeric dCAT1 cells with the S82F pseudotype virus. The S82F pseudotype virus did not induce the formation of syncytia, but did show increased susceptibility to 293 cells expressing dCAT1. The results of our study indicate that S82F-induced syncytium formation may be the result of cell-cell fusion, but not virus-cell fusion.

摘要

鼠嗜亲性逆转录病毒受体已被证明可作为小鼠阳离子氨基酸转运体1(mCAT1)发挥作用,并且由多个跨膜结构域组成。野生小鼠(家鼠)细胞不易受到嗜亲性莫洛尼鼠白血病病毒(MoMLV)的感染,尽管它们可被其他嗜亲性鼠白血病病毒感染,包括Friend MLV和Rauscher MLV。MoMLV在小家鼠细胞中相对无法复制,这归因于小家鼠CAT1受体(dCAT1)第三个细胞外环内的两个氨基酸(V214和G236)。通过交换来自易感染小鼠的mCAT1 cDNA编码受体的第三个细胞外环与编码非易感染小家鼠受体的相应cDNA部分,我们确定了最关键的氨基酸残基,它是位于dCAT1第三个细胞外环中第236位的甘氨酸。我们还试图确定小家鼠CAT1受体的第三个细胞外环在合胞体形成方面的作用。dCAT1与病毒诱导的合胞体之间的关系最初是由我们之前鉴定的两种MLV分离株(莫洛尼病毒中的S82F和Friend MLV中的S84A)所提示的,这两种分离株在小家鼠细胞中均具有独特的细胞病变效应。为了确定dCAT1与病毒诱导的合胞体之间存在的关系,我们用S82F假型病毒感染了293-dCAT1或嵌合dCAT1细胞。S82F假型病毒未诱导合胞体的形成,但对表达dCAT1的293细胞显示出增加的易感性。我们的研究结果表明,S82F诱导的合胞体形成可能是细胞-细胞融合的结果,而非病毒-细胞融合的结果。

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