Inhibition of lassa virus glycoprotein cleavage and multicycle replication by site 1 protease-adapted α1- antitrypsin variants

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Abstract

Background: Proteolytic processing of the Lassa virus envelope glycoprotein precursor GP-C by the host proprotein convertase site 1 protease (S1P) is a prerequisite for the incorporation of the subunits GP-1 and GP-2 into viral particles and, hence, essential for infectivity and virus spread. Therefore, we tested in this study the concept of using S1P as a target to block efficient virus replication. Methodology/Principal Finding: We demonstrate that stable cell lines inducibly expressing S1P-adapted α1-antitrypsin variants inhibit the proteolytic maturation of GP-C. Introduction of the S1P recognition motifs RRIL and RRLL into the reactive center loop of α1-antitrypsin resulted in abrogation of GP-C processing by endogenous S1P to a similar level observed in S1P-deficient cells. Moreover, S1P-specific α 1-antitrypsins significantly inhibited replication and spread of a replication-competent recombinant vesicular stomatitis virus expressing the Lassa virus glycoprotein GP as well as authentic Lassa virus. Inhibition of viral replication correlated with the ability of the different α1-antitrypsin variants to inhibit the processing of the Lassa virus glycoprotein precursor. Conclusions/Significance: Our data suggest that glycoprotein cleavage by S1P is a promising target for the development of novel anti-arenaviral strategies. © 2009 Maisa et al.

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Maisa, A., Ströher, U., Klenk, H. D., Garten, W., & Strecker, T. (2009). Inhibition of lassa virus glycoprotein cleavage and multicycle replication by site 1 protease-adapted α1- antitrypsin variants. PLoS Neglected Tropical Diseases, 3(6). https://doi.org/10.1371/journal.pntd.0000446

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