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Structural and functional insight into the effect of AFF4 dimerization on activation of HIV-1 proviral transcription

Authors :
Dan Tang
Bo Sun
Zhonghan Li
Wenqi Li
Jinsong Duan
Chunjing Chen
Wei Cheng
Jiaming Liu
Qingqing Huang
Ga Liao
Lunzhi Dai
Wendan Chu
Hui Jiang
Kunjie Wang
Jin Huang
Jiahui Zhao
Cuiyan Zhou
Jiawei Wang
Shiqian Qi
Qianqian Chen
Yuhua Xue
Banghua Liao
Xianghui Fu
Source :
Cell Discovery, Vol 6, Iss 1, Pp 1-11 (2020), Cell Discovery
Publication Year :
2020
Publisher :
Nature Publishing Group, 2020.

Abstract

Super elongation complex (SEC) is a positive regulator of RNA polymerase II, which is required for HIV-1 proviral transcription. AFF1/4 is the scaffold protein that recruits other components of SEC and forms dimer depending on its THD domain (TPRL with Handle Region Dimerization Domain). Here we report the crystal structure of the human AFF4-THD at the resolution of 2.4 Å. The α4, α5, and α6 of one AFF4-THD mediate the formation of a dimer and pack tightly against the equivalent part of the second molecule in the dimer of AFF-THD. Mutagenesis analysis revealed that single mutations of either Phe1014 or Tyr1096 of AFF4 to alanine impair the formation of the AFF4 dimer. In addition, transactivation assay also indicated that Phe1014 and Tyr1096 of AFF4 are critical to the transactivation activity of AFF4. Interestingly, the corresponding residues Phe1063 and Tyr1145 in AFF1 have an effect on the transactivation of HIV-1 provirus. However, such mutations of AFF1/4 have no effect on the interaction of AFF1/4 with other subunits of the SEC. Together, our data demonstrated that the dimerization of AFF1/4 is essential to transactivation of HIV-1 provirus.

Details

Language :
English
ISSN :
20565968
Volume :
6
Issue :
1
Database :
OpenAIRE
Journal :
Cell Discovery
Accession number :
edsair.doi.dedup.....9c4ceec8543a9817c315b30bb102ad19
Full Text :
https://doi.org/10.1038/s41421-020-0142-6