The major effect of allosteric HIV integrase (IN) inhibitors (ALLINIs) is observed during virion maturation, where ALLINI treatment interrupts IN-RNA interactions via drug-induced IN aggregation, leading to the formation of aberrant virions. To understand the structural changes that accompany drug-induced aggregation, we determined the soft matter properties of ALLINI-induced IN aggregates. Using small-angle neutron scattering, SEM, and rheology, we have discovered that the higher-order aggregates induced by ALLINIs have the characteristics of weak three-dimensional gels with a fractal-like character. Their formation is inhibited by the host factor LEDGF/p75, as well as ex vivo resistance substitutions. Mutagenesis and biophysical analyses reveal that homomeric carboxy-terminal domain interactions are required to achieve the branched-polymer nature of the ALLINI-induced aggregates. These studies provide key insight into the mechanisms of ALLINI action and resistance in the context of the crowded virion environment where ALLINIs exert their effect.
Allosteric HIV Integrase Inhibitors Promote Formation of Inactive Branched Polymers via Homomeric Carboxy-Terminal Domain Interactions.
变构 HIV 整合酶抑制剂通过同源羧基末端结构域相互作用促进无活性支链聚合物的形成
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作者:Gupta Kushol, Allen Audrey, Giraldo Carolina, Eilers Grant, Sharp Robert, Hwang Young, Murali Hemma, Cruz Katrina, Janmey Paul, Bushman Frederic, Van Duyne Gregory D
| 期刊: | Structure | 影响因子: | 4.300 |
| 时间: | 2021 | 起止号: | 2021 Mar 4; 29(3):213-225 |
| doi: | 10.1016/j.str.2020.12.001 | 研究方向: | 信号转导 |
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