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Association equilibrium of the HIV-1 capsid protein in a crowded medium reveals that hexamerization during capsid assembly requires a functional C-domain dimerization interface

机译:在拥挤的培养基中,HIV-1衣壳蛋白的缔合平衡表明,衣壳组装过程中的六聚化需要功能性的C结构域二聚化界面

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摘要

Polymerization of the intact capsid protein (CA) of HIV-1 into mature capsidlike particles at physiological ionic strength in vitro requires macromolecularly crowded conditions that approach those inside the virion, where the mature capsid is assembled in vivo. The capsid is organized as a hexameric lattice. CA subunits in each hexamer are connected through interfaces that involve the CA N-terminal domain (NTD); pairs of CA subunits belonging to different hexamers are connected through a different interface that involves the C-terminal domain (CTD). At physiological ionic strength in noncrowded conditions, CA subunits homodimerize through this CTD-CTD interface, but do not hexamerize through the other interfaces (those involving the NTD). Here we have investigated whether macromolecular crowding conditions are able to promote hexamerization of the isolated NTD and/or full-length CA (with an inactive CTD-CTD interface to prevent polymerization). The oligomerization state of the proteins was determined using analytical ultracentrifugation in the absence or presence of high concentrations of an inert macromolecular crowding agent. Under the same conditions that promoted efficient assembly of intact CA dimers, neither NTD nor CA with an inactive CTD-CTD interface showed any tendency to form hexamers or any other oligomer. This inability to hexamerize was observed even in macromolecularly crowded conditions. The results indicate that a functional CTD-CTD interface is strictly required for hexamerization of HIV-1 CA through the other interfaces. Together with previous results, these observations suggest that establishment of NTD-CTD interactions involved in CA hexamerization during mature HIV-1 capsid assembly requires a homodimerization-dependent conformational switching of CTD.
机译:HIV-1的完整衣壳蛋白(CA)在体外以生理离子强度聚合成成熟的衣壳样颗粒需要大分子拥挤的条件,该条件接近于病毒体内部的条件,在此处成熟的衣壳是在体内组装的。衣壳组织为六聚体晶格。每个六聚体中的CA亚基通过涉及CA N末端域(NTD)的接口连接;属于不同六聚体的成对的CA亚基对通过涉及C末端域(CTD)的不同接口连接。在非拥挤条件下的生理离子强度下,CA亚基通过此CTD-CTD界面均二聚,但不通过其他界面(涉及NTD的六聚体)进行六聚。在这里,我们研究了大分子拥挤条件是否能够促进分离的NTD和/或全长CA的六聚化(具有无活性的CTD-CTD接口以防止聚合)。在不存在或存在高浓度惰性大分子拥挤剂的情况下,使用分析超速离心法测定蛋白质的寡聚状态。在促进完整的CA二聚体有效组装的相同条件下,NTD和具有无效CTD-CTD界面的CA均未显示出形成六聚体或任何其他低聚物的趋势。即使在大分子拥挤的条件下,也无法观察到六聚体。结果表明,通过其他接口对HIV-1 CA进行六聚化操作必须严格使用功能性CTD-CTD接口。与以前的结果一起,这些观察结果表明,在成熟的HIV-1衣壳装配过程中,与CA六聚化有关的NTD-CTD相互作用的建立需要CTD的二聚化依赖构象转换。

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