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HIV-1 衣壳通过核孔蛋白 NUP358 进行偶联结合和构象改变。

HIV-1 capsid undergoes coupled binding and isomerization by the nuclear pore protein NUP358.

机构信息

Protein and Nucleic Acid Chemistry Division, Medical Research Council Laboratory of Molecular Biology, Hills Road, Cambridge CB2 0QH, UK.

出版信息

Retrovirology. 2013 Jul 31;10:81. doi: 10.1186/1742-4690-10-81.

Abstract

BACKGROUND

Lentiviruses such as HIV-1 can be distinguished from other retroviruses by the cyclophilin A-binding loop in their capsid and their ability to infect non-dividing cells. Infection of non-dividing cells requires transport through the nuclear pore but how this is mediated is unknown.

RESULTS

Here we present the crystal structure of the N-terminal capsid domain of HIV-1 in complex with the cyclophilin domain of nuclear pore protein NUP358. The structure reveals that HIV-1 is positioned to allow single-bond resonance stabilisation of exposed capsid residue P90. NMR exchange experiments demonstrate that NUP358 is an active isomerase, which efficiently catalyzes cis-trans isomerization of the HIV-1 capsid. In contrast, the distantly related feline lentivirus FIV can bind NUP358 but is neither isomerized by it nor requires it for infection.

CONCLUSION

Isomerization by NUP358 may be preserved by HIV-1 to target the nuclear pore and synchronize nuclear entry with capsid uncoating.

摘要

背景

慢病毒,如 HIV-1,可以通过它们衣壳中的亲环素 A 结合环和感染非分裂细胞的能力来与其他逆转录病毒区分开来。非分裂细胞的感染需要通过核孔运输,但这是如何介导的尚不清楚。

结果

在这里,我们展示了 HIV-1 的 N 端衣壳结构域与核孔蛋白 NUP358 的亲环素结构域复合物的晶体结构。该结构揭示了 HIV-1 的位置,允许暴露的衣壳残基 P90 的单键共振稳定。NMR 交换实验表明,NUP358 是一种有效的异构酶,它能有效地催化 HIV-1 衣壳的顺反异构化。相比之下,亲缘关系较远的猫科慢病毒 FIV 可以结合 NUP358,但不受其异构化作用影响,也不需要它进行感染。

结论

NUP358 的异构化可能被 HIV-1 保留下来,以靶向核孔并使核进入与衣壳脱壳同步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfc8/3750474/ee00f753fed1/1742-4690-10-81-1.jpg

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