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β逆转录病毒梅森- Pfizer猴病毒可选择性地将猿类载脂蛋白B mRNA编辑酶催化多肽样蛋白3G(APOBEC3G)排除在病毒粒子之外。

The betaretrovirus Mason-Pfizer monkey virus selectively excludes simian APOBEC3G from virion particles.

作者信息

Doehle Brian P, Bogerd Hal P, Wiegand Heather L, Jouvenet Nolwenn, Bieniasz Paul D, Hunter Eric, Cullen Bryan R

机构信息

Duke University Medical Center, Box 3025, Durham, NC 27710, USA.

出版信息

J Virol. 2006 Dec;80(24):12102-8. doi: 10.1128/JVI.01600-06. Epub 2006 Oct 11.

Abstract

The APOBEC3 protein family can constitute a potent barrier to the successful infection of mammalian species by retroviruses. Therefore, any retrovirus that has evolved the ability to replicate in a given animal must have developed mechanisms that allow it to avoid or inhibit the APOBEC3 proteins expressed in that animal. Here, we demonstrate that Mason-Pfizer monkey virus (MPMV) is resistant to inhibition by the APOBEC3G protein expressed in its normal host, the rhesus macaque, but highly susceptible to inhibition by murine APOBEC3 (mA3). MPMV virion particles fail to package rhesus APOBEC3G (rA3G), and MPMV Gag binds rA3G poorly in coexpressing cells. In contrast, MPMV virions package mA3 efficiently and MPMV Gag-mA3 complexes are readily detected. Moreover, mA3, but not rA3G, partially colocalizes with MPMV Gag in the cytoplasm of coexpressing cells. Previously, we have demonstrated that murine leukemia virus also escapes inhibition by APOBEC3 proteins by avoiding virion incorporation of its cognate APOBEC3 protein, mA3, yet is inhibited by primate APOBEC3G proteins, which it packages effectively (B. P. Doehle, A. Schäfer, H. L. Wiegand, H. P. Bogerd, and B. R. Cullen, J. Virol. 79:8201-8207, 2005). The finding that two essentially unrelated beta- and gammaretroviruses use similar mechanisms to escape inhibition by the APOBEC3 proteins found in their normal host species suggests that the selective exclusion of APOBEC3 proteins from virion particles may be a general mechanism used by simple mammalian retroviruses.

摘要

载脂蛋白B mRNA编辑酶催化多肽样3(APOBEC3)蛋白家族可对逆转录病毒成功感染哺乳动物物种构成强大障碍。因此,任何进化出在特定动物体内复制能力的逆转录病毒都必定形成了使其能够规避或抑制该动物体内表达的APOBEC3蛋白的机制。在此,我们证明,梅森- Pfizer猴病毒(MPMV)对其正常宿主恒河猴体内表达的APOBEC3G蛋白的抑制具有抗性,但对鼠源APOBEC3(mA3)的抑制高度敏感。MPMV病毒粒子无法包装恒河猴APOBEC3G(rA3G),并且MPMV Gag在共表达细胞中与rA3G结合不佳。相反,MPMV病毒粒子能有效包装mA3,并且很容易检测到MPMV Gag-mA3复合物。此外,mA3而非rA3G在共表达细胞的细胞质中与MPMV Gag部分共定位。此前,我们已证明鼠白血病病毒也通过避免其同源APOBEC3蛋白mA3掺入病毒粒子来逃避APOBEC3蛋白的抑制,但会被其有效包装的灵长类APOBEC3G蛋白抑制(B. P. Doehle、A. Schäfer、H. L. Wiegand、H. P. Bogerd和B. R. Cullen,《病毒学杂志》79:8201 - 8207,2005年)。两种基本不相关的β-和γ-逆转录病毒利用相似机制逃避其正常宿主物种中发现的APOBEC3蛋白的抑制这一发现表明,从病毒粒子中选择性排除APOBEC3蛋白可能是简单哺乳动物逆转录病毒使用的一种普遍机制。

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