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Biology subjects

Suder, P.

Publications and source records attributed to Suder, P..

2 recordsLinked to original sources

Despite the odds: formation of the SARS-CoV-2 methylation complex.

Coronaviruses protect their single-stranded RNA genome with a methylated cap during replication. The capping process is initiated by several nonstructural proteins (nsp) encoded in the viral genome. The methylation is performed by two methyltransferases, nsp14 and nsp16 where nsp10 acts as a co-factor to both. Aditionally, nsp14 carries an exonuclease domain, which operates in the proofreading system during RNA replication of the viral genome. Both nsp14 and nsp16 were reported to independently bind nsp10, but the available structural information suggests that the concomitant interaction between these three proteins should be impossible due to steric clashes. Here, we show that nsp14, nsp10, and nsp16 can form a heterotrimer complex. This interaction is expected to encourage formation of mature capped viral mRNA, modulating the nsp14s exonuclease activity, and protecting the viral RNA. Our findings show that nsp14 is amenable to allosteric regulation and may serve as a novel target for therapeutic approaches.

microbiology↗

Zika virus NS3 protease and its cellular substrates

AO_SCPLOWBSTRACTC_SCPLOWZika virus is a flavivirus discovered in 1947, but the association between Zika virus infection and brain disorders was not demonstrated until 2015 in Brazil. Infection mostly poses a threat to women during pregnancy, since it may cause microcephaly and other neurological dysfunctions in the developing fetus. However, infection is also associated with Guillain-Barre syndrome. The nonstructural NS3 protein is essential for virus replication because it helps to remodel the cellular microenvironment. Several reports show that this protease can process cellular substrates and thereby modify cellular pathways that are important for the virus. Herein, we explored some of the targets of NS3, but we could not confirm the biological relevance of its protease activity. Thus, although mass spectrometry is highly sensitive and useful in many instances, being also able to show directions, where cell/virus interaction occurs, we believe that biological validation of the observed results is essential.

microbiology↗