Predicted membrane topology of the coronavirus protein E1
Publication date
1986-12-01
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Abstract
The structure of the envelope protein E1 of two coronaviruses, mouse hepatitis virus strain A59 and infectious bronchitis virus, was analyzed by applying several theoretical methods to their amino acid sequence. The results of these analyses combined with earlier data on the orientation and protease sensitivity of E1 assembled in microsomal membranes lead to a topological model. According to this model, the protein is anchored in the lipid bilayer by three successive membrane-spanning helices present in its N-terminal half whereas the C-terminal part is thought to be associated with the membrane surface; these interactions with the membrane protect almost the complete polypeptide against protease digestion. In addition, it is predicted that the insertion of E1 into the membrane occurs by the recognition of the internal transmembrane region(s) as a signal sequence.
Keywords
Biochemistry, SDG 3 - Good Health and Well-being
Citation
Rottier, P J M, Welling, G W, Welling-Wester, S, Niesters, H G M, Lenstra, J A & Van Der Zeijst, B A M 1986, 'Predicted membrane topology of the coronavirus protein E1', Biochemistry, vol. 25, no. 6, pp. 1335-1339. https://doi.org/10.1021/bi00354a022