首页> 美国卫生研究院文献>Journal of Virology >Residue Trp-48 of Tva is critical for viral entry but not for high-affinity binding to the SU glycoprotein of subgroup A avian leukosis and sarcoma viruses.
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Residue Trp-48 of Tva is critical for viral entry but not for high-affinity binding to the SU glycoprotein of subgroup A avian leukosis and sarcoma viruses.

机译:Tva的Trp-48残基对于病毒进入至关重要但对于与A亚群禽白血病和肉瘤病毒SU糖蛋白的高亲和力结合而言并不重要。

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摘要

Previously, mutant Tva receptors were classified as either partially or completely defective in mediating subgroup A avian leukosis and sarcoma virus (ALSV-A) entry (C. Bélanger, K. Zingler, and J. A. T. Young, J. Virol. 69:1019-1024, 1995; K. Zingler, C. Bélanger, R. Peters, D. Agard, and J. A. T. Young, J. Virol. 69:4261-4266, 1995). To specifically test the abilities of these mutant Tva proteins to bind ALSV-A surface (SU) protein, binding studies were performed with a subgroup A SU-immunoadhesin. This fusion protein is composed of the subgroup A Schmidt-Ruppin SU protein fused in frame to a rabbit immunoglobulin constant region. This reagent was conjugated to fluorescein isothiocyanate and used for flow cytometric analysis with transfected human 293 cells expressing different forms of Tva. The SU-immunoadhesin bound the wild-type Tva protein with a KD of approximately 1.5 nM. Amino acid substitutions that reduced viral entry at Asp-46 and at Cys-35 and Cys-50, which are predicted to form an intrachain disulfide bond in Tva, drastically reduced the binding affinity for the SU-immunoadhesin. Thus, the effects on viral entry of some mutations could be explained solely by changes in the binding affinity for ALSV-A SU. However, this was not true for other mutations tested, especially those with amino acid substitutions that replaced Trp-48. Compared with the wild-type receptor, these latter mutations led to approximately 43- to 200-fold reductions in viral infectivity but only to approximately 2.5- to 3.4-fold reductions in the binding affinity for the SU-immunoadhesin. These results support a role for Trp-48 of Tva in mediating steps of viral entry subsequent to binding ALSV-A SU.
机译:以前,突变的Tva受体在介导A组禽白血病和肉瘤病毒(ALSV-A)进入方面被分类为部分或全部缺陷(C.Bélanger,K. Zingler,and JAT Young,J. Virol。69:1019-1024 ,1995; K.Zingler,C.Bélanger,R.Peters,D.Agard,和JAT Young,J.Virol.69:4261-4266,1995)。为了特异性地测试这些突变的Tva蛋白结合ALSV-A表面(SU)蛋白的能力,用亚组SU SU-免疫粘附素进行了结合研究。该融合蛋白由框架内与兔免疫球蛋白恒定区框内融合的A亚型Schmidt-Ruppin SU蛋白组成。将此试剂与异硫氰酸荧光素偶联,并用于表达不同形式Tva的转染人293细胞的流式细胞仪分析。 SU-免疫粘附素以约1.5 nM的KD结合野生型Tva蛋白。减少了Asp-46以及Cys-35和Cys-50上的病毒进入的氨基酸替换(预计在Tva中形成链内二硫键)大大降低了对SU-免疫粘附素的结合亲和力。因此,仅通过对ALSV-A SU的结合亲和力的变化可以解释某些突变对病毒进入的影响。但是,对于测试的其他突变,尤其是那些具有取代Trp-48的氨基酸取代的突变,情况并非如此。与野生型受体相比,这些后面的突变导致病毒感染力降低约43至200倍,但对SU免疫粘附素的结合亲和力仅降低约2.5至3.4倍。这些结果支持了Tva的Trp-48在结合ALSV-A SU后介导病毒进入步骤中的作用。

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