Author: Cárdenasâ€Conejo, Yair; Liñanâ€Rico, Andrómeda; GarcÃaâ€RodrÃguez, Daniel Alejandro; Centenoâ€Leija, Sara; Serranoâ€Posada, Hugo
Title: An exclusive 42 amino acid signature in pp1ab protein provides insights into the evolutive history of the 2019 novel humanâ€pathogenic coronavirus (SARSâ€CoVâ€2) Cord-id: bgh729s5 Document date: 2020_3_20
ID: bgh729s5
Snippet: The city of Wuhan, Hubei province, China, was the origin of a severe pneumonia outbreak in December 2019, attributed to a novel coronavirus (severe acute respiratory syndrome coronavirus 2 [SARSâ€CoVâ€2]), causing a total of 2761 deaths and 81109 cases (25 February 2020). SARSâ€CoVâ€2 belongs to genus Betacoronavirus, subgenus Sarbecovirus. The polyprotein 1ab (pp1ab) remains unstudied thoroughly since it is similar to other sarbecoviruses. In this short communication, we performed phylogene
Document: The city of Wuhan, Hubei province, China, was the origin of a severe pneumonia outbreak in December 2019, attributed to a novel coronavirus (severe acute respiratory syndrome coronavirus 2 [SARSâ€CoVâ€2]), causing a total of 2761 deaths and 81109 cases (25 February 2020). SARSâ€CoVâ€2 belongs to genus Betacoronavirus, subgenus Sarbecovirus. The polyprotein 1ab (pp1ab) remains unstudied thoroughly since it is similar to other sarbecoviruses. In this short communication, we performed phylogeneticâ€structural sequence analysis of pp1ab protein of SARSâ€CoVâ€2. The analysis showed that the viral pp1ab has not changed in most isolates throughout the outbreak time, but interestingly a deletion of 8 aa in the virulence factor nonstructural protein 1 was found in a virus isolated from a Japanese patient that did not display critical symptoms. While comparing pp1ab protein with other betacoronaviruses, we found a 42 amino acid signature that is only present in SARSâ€CoVâ€2 (ASâ€SCoV2). Members from clade 2 of sarbecoviruses have traces of this signature. The ASâ€SCoV2 located in the acidicâ€domain of papainâ€like protein of SARSâ€CoVâ€2 and batâ€SLâ€CoVâ€RatG13 guided us to suggest that the novel 2019 coronavirus probably emerged by genetic drift from batâ€SLâ€CoVâ€RaTG13. The implication of this amino acid signature in papainâ€like protein structure arrangement and function is something worth to be explored.
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