Tyrosine phosphorylation modulates mitochondrial chaperonin Hsp60 and delays rotavirus NSP4-mediated apoptotic signaling in host cells
Rotavirus
Proteasome Endopeptidase Complex
0303 health sciences
Time Factors
Apoptosis
Chaperonin 60
Viral Nonstructural Proteins
Cell Line
03 medical and health sciences
Host-Pathogen Interactions
Proteolysis
Humans
Tyrosine
Phosphorylation
Protein Processing, Post-Translational
Glycoproteins
Signal Transduction
Toxins, Biological
DOI:
10.1111/cmi.12670
Publication Date:
2016-09-25T04:52:39Z
AUTHORS (7)
ABSTRACT
Phosphoproteomics-based platforms have been widely used to identify post translational dynamics of cellular proteins in response to viral infection. The present study was undertaken to assess differential tyrosine phosphorylation during early hours of rotavirus (RV) SA11 infection. Heat shock proteins (Hsp60) were found to be enriched in the data set of RV-SA11 induced differentially tyrosine-phosphorylated proteins at 2 hr post infection (hpi). Hsp60 was further found to be phosphorylated by an activated form of Src kinase on 227th tyrosine residue, and tyrosine phosphorylation of mitochondrial chaperonin Hsp60 correlated with its proteasomal degradation at 2-2.5hpi. Interestingly, mitochondrial Hsp60 positively influenced translocation of the rotaviral nonstructural protein 4 to mitochondria during RV infections. Phosphorylation and subsequent transient degradation of mitochondrial Hsp60 during early hours of RV-SA11 infection resulted in inhibition of premature import of nonstructural protein 4 into mitochondria, thereby delaying early apoptosis. Overall, the study highlighted one of the many strategies rotavirus undertakes to prevent early apoptosis and subsequent reduced viral progeny yield.
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