Cryo-EM structure of coronavirus-HKU1 haemagglutinin esterase reveals architectural changes arising from prolonged circulation in humans

Publication date

2020-09-16

Authors

Hurdiss, Daniel LORCID 0000-0003-3834-5808ISNI 0000000476570907
Drulyte, Ieva
Lang, YifeiISNI 0000000492902596
Shamorkina, Tatiana MISNI 0000000492921228
Pronker, Matti FORCID 0000-0001-5268-7690ISNI 0000000492496882
van Kuppeveld, Frank J MISNI 0000000369420196
Snijder, JoostISNI 0000000387416756
de Groot, RaoulISNI 0000000397145355

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Abstract

The human betacoronaviruses HKU1 and OC43 (subgenus Embecovirus) arose from separate zoonotic introductions, OC43 relatively recently and HKU1 apparently much longer ago. Embecovirus particles contain two surface projections called spike (S) and haemagglutinin-esterase (HE), with S mediating receptor binding and membrane fusion, and HE acting as a receptor-destroying enzyme. Together, they promote dynamic virion attachment to glycan-based receptors, specifically 9-O-acetylated sialic acid. Here we present the cryo-EM structure of the ~80 kDa, heavily glycosylated HKU1 HE at 3.4 Å resolution. Comparison with existing HE structures reveals a drastically truncated lectin domain, incompatible with sialic acid binding, but with the structure and function of the esterase domain left intact. Cryo-EM and mass spectrometry analysis reveals a putative glycan shield on the now redundant lectin domain. The findings further our insight into the evolution and host adaptation of human embecoviruses, and demonstrate the utility of cryo-EM for studying small, heavily glycosylated proteins.

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Citation

Hurdiss, D L, Drulyte, I, Lang, Y, Shamorkina, T M, Pronker, M F, van Kuppeveld, F J M, Snijder, J & de Groot, R J 2020, 'Cryo-EM structure of coronavirus-HKU1 haemagglutinin esterase reveals architectural changes arising from prolonged circulation in humans', Nature Communications, vol. 11, no. 1, 4646, pp. 1-10. https://doi.org/10.1038/s41467-020-18440-6