Font Size: a A A

Proteasome Regulation By Reversible Tyrosine Phosphorylation Of Rpt2 At Cellular Membranes

Posted on:2021-04-07Degree:DoctorType:Dissertation
Country:ChinaCandidate:L ChenFull Text:PDF
GTID:1480306545967629Subject:Cell biology
Abstract/Summary:PDF Full Text Request
Reversible phosphorylation has emerged as an important mechanism for regulating 26S proteasome function in health and disease.Over 100 phospho-tyrosine(pTyr)sites of the human proteasome have been detected,and yet their function and regulation remain poorly understood.Here we show that the 19S subunit Rpt2 is phosphorylated at Tyr439,a strictly conserved residue within the C-terminal HbYX motif of Rpt2 that is essential for proteasome assembly.Unexpectedly,we found that Y439 phosphorylation depends on Rpt2 membrane localization mediated by its N-myristoylation.Multiple receptor tyrosine kinases(RTKs)can trigger Rpt2-Y439 phosphorylation by activating Src,a N-myristoylated tyrosine kinase.Src directly phosphorylates Rpt2-Y439 in vitro and negatively regulates proteasome integrity and activity at cellular membranes,which can be reversed by the membrane-associated isoform of protein tyrosine phosphatase non receptor type 2(PTPN2).In H1975 lung cancer cells with activated Src,blocking Rpt2-Y439 phosphorylation by the Y439F mutation conferred partial resistance to the Src inhibitor saracatinib both in vitro and in a mouse xenograft tumor model,and caused significant changes of cellular responses to saracatinib at the proteome level.Our study has defined a novel tyrosine kinase-phosphatase pair involved in the spatial regulation of proteasome function and provided new insights into tyrosine kinase inhibitor-based anti-cancer therapies.
Keywords/Search Tags:proteasome, Rpt2, tyrosine phosphorylation, Src, PTPN2, myristoylation
PDF Full Text Request
Related items