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包膜蛋白中受体重组干扰与宿主依赖型结合后进入缺陷的偶联。

Coupling of receptor interference and a host-dependent post-binding entry deficiency in a gammaretroviral envelope protein.

机构信息

Department of Molecular Biology, Aarhus University, DK-8000 Aarhus, Denmark.

出版信息

Retrovirology. 2010 Feb 5;7:9. doi: 10.1186/1742-4690-7-9.

Abstract

BACKGROUND

SL3-2 is a unique polytropic murine gammaretroviral isolate that is only able to infect murine cells. We have previously shown that two mutations R212G and T213I located on the surface of the receptor binding domain in a region designated the VR3 loop can alter the species tropism of this envelope protein. This location suggests that the VR3 loop composition has an influence on receptor interaction and thereby affects binding as well as superinfection resistance. In order to investigate this further, we have studied the binding and interference patterns of the SL3-2 envelope and its mutants.

RESULTS

We find unexpectedly that wild type SL3-2 envelope binds equally well to both permissive and non-permissive cells, indicating a post binding defect when interacting with the human Xpr1. Using replication competent viruses containing envelopes from SL3-2 or its mutants we find that the same amino acid mutations can dramatically alter the interference profile of this polytropic ENV, suggesting that the same amino acid changes that cause the post binding defect also influence interaction with the receptor.

CONCLUSIONS

The envelope protein of SL3-2 MLV shows an entry defect on non-murine cells. This is coupled to a dramatically reduced ability to interfere with entry of other polytropic viruses. Two point mutations in the VR3 loop of the receptor binding domain of this envelope result both in a much increased interference ability and in removing the post-binding defect on non-murine cells, suggesting that both of these phenotypes are a consequence of insufficient interaction between the envelope and the receptor.

摘要

背景

SL3-2 是一种独特的多形性鼠逆转录病毒分离株,只能感染鼠细胞。我们之前已经表明,位于受体结合域表面的两个突变 R212G 和 T213I,位于 VR3 环指定的区域,可以改变这种包膜蛋白的种属嗜性。这个位置表明 VR3 环的组成对受体相互作用有影响,从而影响结合和超感染抗性。为了进一步研究这一点,我们研究了 SL3-2 包膜及其突变体的结合和干扰模式。

结果

我们出乎意料地发现,野生型 SL3-2 包膜与允许和不允许的细胞结合同样良好,表明在与人 Xpr1 相互作用时存在结合后缺陷。使用含有 SL3-2 或其突变体包膜的复制型病毒,我们发现相同的氨基酸突变可以显著改变这种多形性 ENV 的干扰谱,表明导致结合后缺陷的相同氨基酸变化也会影响与受体的相互作用。

结论

SL3-2 MLV 的包膜蛋白在非鼠细胞上显示出进入缺陷。这与它显著降低了干扰其他多形性病毒进入的能力有关。该包膜受体结合域 VR3 环中的两个点突变,既增加了干扰能力,又消除了非鼠细胞上的结合后缺陷,这表明这两种表型都是包膜与受体之间相互作用不足的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2fa/2827363/cfdaa7536b34/1742-4690-7-9-1.jpg

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