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Nef诱导的CD4下调:1型人类免疫缺陷病毒Nef中的双酸性序列并非通过直接结合β-COP发挥蛋白质分选基序的作用。

Nef-induced CD4 downregulation: a diacidic sequence in human immunodeficiency virus type 1 Nef does not function as a protein sorting motif through direct binding to beta-COP.

作者信息

Janvier K, Craig H, Le Gall S, Benarous R, Guatelli J, Schwartz O, Benichou S

机构信息

Institut Cochin de Génétique Moléculaire, INSERM U529, Université Paris V, Paris, France.

出版信息

J Virol. 2001 Apr;75(8):3971-6. doi: 10.1128/JVI.75.8.3971-3976.2001.

Abstract

The Nef protein from the human immunodeficiency virus (HIV) induces CD4 cell surface downregulation by interfering with the endocytic machinery. It has been recently proposed that binding of HIV type 1 Nef to the beta subunit of COPI coatomers participated in the Nef-induced CD4 downregulation through recognition of a novel diacidic motif found in the C-terminal disordered loop of Nef (V. Piguet, F. Gu, M. Foti, N. Demaurex, J. Gruenberg, J. L. Carpentier, and D. Trono, Cell 97:63-73, 1999). We have mutated the glutamate residues which formed this motif in order to document this observation. Surprisingly, mutation of the diacidic sequence of Nef did not significantly affect its ability (i) to interact with beta-COP, (ii) to downregulate CD4 cell surface expression, and (iii) to address an integral resident membrane protein containing Nef as the cytoplasmic domain to the endocytic pathway. Our results indicate that these acidic residues are not involved in the connection of Nef with the endocytic machinery through binding to beta-COP. Additional studies are thus required to characterize the residues of Nef involved in the binding to beta-COP and to evaluate the contribution of this interaction to the Nef-induced perturbations of membrane trafficking.

摘要

人类免疫缺陷病毒(HIV)的Nef蛋白通过干扰内吞机制诱导CD4细胞表面下调。最近有人提出,1型HIV的Nef与COPI衣被蛋白的β亚基结合,通过识别Nef C末端无序环中发现的一个新的双酸性基序,参与了Nef诱导的CD4下调(V. Piguet、F. Gu、M. Foti、N. Demaurex、J. Gruenberg、J. L. Carpentier和D. Trono,《细胞》97:63 - 73,1999年)。我们对形成该基序的谷氨酸残基进行了突变,以证实这一观察结果。令人惊讶地是,Nef双酸性序列的突变并未显著影响其(i)与β - COP相互作用的能力,(ii)下调CD4细胞表面表达的能力,以及(iii)将含有Nef作为细胞质结构域的完整驻留膜蛋白导向内吞途径的能力。我们的结果表明,这些酸性残基不参与Nef通过与β - COP结合而与内吞机制的连接。因此,需要进一步研究来确定Nef中参与与β - COP结合的残基,并评估这种相互作用对Nef诱导的膜转运扰动的贡献。

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