Luo Yang, Jacobs Erica Y, Greco Todd M, Mohammed Kevin D, Tong Tommy, Keegan Sarah, Binley James M, Cristea Ileana M, Fenyö David, Rout Michael P, Chait Brian T, Muesing Mark A
Aaron Diamond AIDS Research Center, 455 1st Avenue, New York, New York 10016, USA.
Laboratory of Mass Spectrometry and Gaseous Ion Chemistry, The Rockefeller University, 1230 York Avenue, New York, New York 10065, USA.
Nat Microbiol. 2016 Jul;1(7):16068. doi: 10.1038/nmicrobiol.2016.68. Epub 2016 May 23.
Although genetically compact, HIV-1 commandeers vast arrays of cellular machinery to sustain and protect it during cycles of viral outgrowth. Transposon-mediated saturation linker scanning mutagenesis was used to isolate fully replication-competent viruses harbouring a potent foreign epitope tag. Using these viral isolates, we performed differential isotopic labelling and affinity-capture mass spectrometric analyses on samples obtained from cultures of human lymphocytes to classify the vicinal interactomes of the viral Env and Vif proteins as they occur during natural infection. Importantly, interacting proteins were recovered without bias, regardless of their potential for positive, negative or neutral impact on viral replication. We identified specific host associations made with trimerized Env during its biosynthesis, at virological synapses, with innate immune effectors (such as HLA-E) and with certain cellular signalling pathways (for example, Notch1). We also defined Vif associations with host proteins involved in the control of nuclear transcription and nucleoside biosynthesis as well as those interacting stably or transiently with the cytoplasmic protein degradation apparatus. Our approach is broadly applicable to elucidating pathogen-host interactomes, providing high-certainty identification of interactors by their direct access during cycling infection. Understanding the pathophysiological consequences of these associations is likely to provide strategic targets for antiviral intervention.
尽管HIV-1基因组紧凑,但在病毒增殖周期中,它会征用大量细胞机制来维持和保护自身。利用转座子介导的饱和连接子扫描诱变技术,分离出携带有效外源表位标签且具有完全复制能力的病毒。使用这些病毒分离株,我们对从人类淋巴细胞培养物中获得的样本进行了差异同位素标记和亲和捕获质谱分析,以分类病毒Env和Vif蛋白在自然感染过程中形成的邻近相互作用组。重要的是,相互作用的蛋白质无偏差地被回收,无论它们对病毒复制的潜在影响是正、负还是中性。我们确定了在三聚化Env生物合成过程中、在病毒学突触处、与先天免疫效应器(如HLA-E)以及与某些细胞信号通路(如Notch1)形成的特定宿主关联。我们还定义了Vif与参与控制核转录和核苷生物合成的宿主蛋白以及与细胞质蛋白降解装置稳定或瞬时相互作用的宿主蛋白之间的关联。我们的方法广泛适用于阐明病原体-宿主相互作用组,通过在循环感染期间直接获取相互作用物来提供高度确定的鉴定。了解这些关联的病理生理后果可能为抗病毒干预提供战略靶点。