Bypassing pan-enterovirus host factor PLA2G16

Publication date

2019-07-18

Authors

Baggen, JimISNI 0000000419575111
Liu, Yue
Lyoo, HeyrhyoungISNI 0000000492805278
van Vliet, ArnoISNI 0000000492959883
Wahedi, MaryamISNI 0000000507797902
de Bruin, Jost W
Roberts, Richard W
Overduin, Pieter
Meijer, Adam
Rossmann, Michael G

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Abstract

Enteroviruses are a major cause of human disease. Adipose-specific phospholipase A2 (PLA2G16) was recently identified as a pan-enterovirus host factor and potential drug target. In this study, we identify a possible mechanism of PLA2G16 evasion by employing a dual glycan receptor-binding enterovirus D68 (EV-D68) strain. We previously showed that this strain does not strictly require the canonical EV-D68 receptor sialic acid. Here, we employ a haploid screen to identify sulfated glycosaminoglycans (sGAGs) as its second glycan receptor. Remarkably, engagement of sGAGs enables this virus to bypass PLA2G16. Using cryo-EM analysis, we reveal that, in contrast to sialic acid, sGAGs stimulate genome release from virions via structural changes that enlarge the putative openings for genome egress. Together, we describe an enterovirus that can bypass PLA2G16 and identify additional virion destabilization as a potential mechanism to circumvent PLA2G16.

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Baggen, J, Liu, Y, Lyoo, H, van Vliet, A L W, Wahedi, M, de Bruin, J W, Roberts, R W, Overduin, P, Meijer, A, Rossmann, M G, Thibaut, H J & van Kuppeveld, F J M 2019, 'Bypassing pan-enterovirus host factor PLA2G16', Nature Communications, vol. 10, no. 1, 3171. https://doi.org/10.1038/s41467-019-11256-z