Structural and functional basis of low-affinity SAM/SAH-binding in the conserved MTase of the multi-segmented Alongshan virus distantly related to canonical unsegmented flaviviruses

Alongshan virus (ALSV), a newly discovered member of unclassified Flaviviridae family, is able to infect humans. ALSV has a multi-segmented genome organization and is evolutionarily distant from canonical mono-segmented flaviviruses. The virus-encoded methyltransferase (MTase) plays an important rol...

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Veröffentlicht in:PLoS pathogens 2023-10, Vol.19 (10), p.e1011694-e1011694
Hauptverfasser: Chen, Hua, Lin, Sheng, Yang, Fanli, Chen, Zimin, Guo, Liyan, Yang, Jing, Lin, Xi, Wang, Lingling, Duan, Yanping, Wen, Ao, Zhang, Xindan, Dai, Yushan, Yin, Keqing, Yuan, Xin, Yu, Chongzhang, He, Yarong, He, Bin, Cao, Yu, Dong, Haohao, Li, Jian, Zhao, Qi, Liu, Quan, Lu, Guangwen
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Sprache:eng
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Zusammenfassung:Alongshan virus (ALSV), a newly discovered member of unclassified Flaviviridae family, is able to infect humans. ALSV has a multi-segmented genome organization and is evolutionarily distant from canonical mono-segmented flaviviruses. The virus-encoded methyltransferase (MTase) plays an important role in viral replication. Here we show that ALSV MTase readily binds S-adenosyl-L-methionine (SAM) and S-adenosyl-L-homocysteine (SAH) but exhibits significantly lower affinities than canonical flaviviral MTases. Structures of ALSV MTase in the free and SAM/SAH-bound forms reveal that the viral enzyme possesses a unique loop-element lining side-wall of the SAM/SAH-binding pocket. While the equivalent loop in flaviviral MTases half-covers SAM/SAH, contributing multiple hydrogen-bond interactions; the pocket-lining loop of ALSV MTase is of short-length and high-flexibility, devoid of any physical contacts with SAM/SAH. Subsequent mutagenesis data further corroborate such structural difference affecting SAM/SAH-binding. Finally, we also report the structure of ALSV MTase bound with sinefungin, an SAM-analogue MTase inhibitor. These data have delineated the basis for the low-affinity interaction between ALSV MTase and SAM/SAH and should inform on antiviral drug design.
ISSN:1553-7374
1553-7366
1553-7374
DOI:10.1371/journal.ppat.1011694