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January 1, 1997Journal of Virology32 citationsOpen Access

Tyrosine phosphorylation events during coxsackievirus B3 replication

MHMichael HuberHSHans‐Christoph SelinkaRKReinhard Kandolf

Structured PICO

P
Population
HeLa cells and Vero cells infected with coxsackievirus B3 (CVB3), echovirus (EV)11, or EV12
I
Intervention
Herbimycin A (specific inhibitor of Src-like protein tyrosine kinases), staurosporine, and calphostin C
O
Outcome
Cellular protein tyrosine phosphorylation and production of progeny virionssurrogate

Inhibition of Src-like protein tyrosine kinases by Herbimycin A reduces coxsackievirus B3 replication, suggesting cellular tyrosine phosphorylation is important for effective enterovirus replication.

Abstract

In order to study cellular and viral determinants of pathogenicity, interactions between coxsackievirus B3 (CVB3) replication and cellular protein tyrosine phosphorylation were investigated. During CVB3 infection of HeLa cells, distinct proteins become phosphorylated on tyrosine residues, as detected by the use of antiphosphotyrosine Western blotting. Two proteins of 48 and 200 kDa showed enhanced tyrosine phosphorylation 4 to 5 h postinfection (p.i.), although virus-induced inhibition of cellular protein synthesis had already occurred 3 to 4 h p.i. Subcellular fractionation experiments revealed distinct localization of tyrosine-phosphorylated proteins of 48 and 200 kDa in the cytosol and membrane fractions of infected cells, respectively. In addition, in Vero cells infected with CVB3, echovirus (EV)11, or EV12, increased tyrosine phosphorylation of a 200-kDa protein was detected 6 h p.i. Herbimycin A, a specific inhibitor of Src-like protein tyrosine kinases, was shown to inhibit virus-induced tyrosine phosphorylations and to reduce the production of progeny virions. In contrast, in cells treated with the inhibitors staurosporine and calphostin C, the synthesis of progeny virions was not affected. Immunoprecipitation experiments suggested that the tyrosine-phosphorylated 200-kDa protein in CVB3-infected cells is of cellular origin. In summary, these investigations have begun to unravel the effect of CVB3 as well as EV11 and EV12 replication on cellular tyrosine phosphorylation and support the importance of tyrosine phosphorylation events for effective virus replication. Such cellular phosphorylation events triggered in the course of enterovirus infection may enhance virus replication.

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Cite This Study

Huber et al. (1997) studied this question.

synapsesocial.com/papers/6a72d75a2fdcb5703edb9d12https://doi.org/10.1128/jvi.71.1.595-600.1997
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