Literature DB >> 27715044

The Activation of c-Src Tyrosine Kinase: Conformational Transition Pathway and Free Energy Landscape.

Mikolai Fajer1, Yilin Meng1, Benoît Roux1.   

Abstract

Tyrosine kinases are important cellular signaling allosteric enzymes that regulate cell growth, proliferation, metabolism, differentiation, and migration. Their activity must be tightly controlled, and malfunction can lead to a variety of diseases, particularly cancer. The nonreceptor tyrosine kinase c-Src, a prototypical model system and a representative member of the Src-family, functions as complex multidomain allosteric molecular switches comprising SH2 and SH3 domains modulating the activity of the catalytic domain. The broad picture of self-inhibition of c-Src via the SH2 and SH3 regulatory domains is well characterized from a structural point of view, but a detailed molecular mechanism understanding is nonetheless still lacking. Here, we use advanced computational methods based on all-atom molecular dynamics simulations with explicit solvent to advance our understanding of kinase activation. To elucidate the mechanism of regulation and self-inhibition, we have computed the pathway and the free energy landscapes for the "inactive-to-active" conformational transition of c-Src for different configurations of the SH2 and SH3 domains. Using the isolated c-Src catalytic domain as a baseline for comparison, it is observed that the SH2 and SH3 domains, depending upon their bound orientation, promote either the inactive or active state of the catalytic domain. The regulatory structural information from the SH2-SH3 tandem is allosterically transmitted via the N-terminal linker of the catalytic domain. Analysis of the conformational transition pathways also illustrates the importance of the conserved tryptophan 260 in activating c-Src, and reveals a series of concerted events during the activation process.

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Year:  2016        PMID: 27715044      PMCID: PMC5398919          DOI: 10.1021/acs.jpcb.6b08409

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  62 in total

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3.  On the importance of a funneled energy landscape for the assembly and regulation of multidomain Src tyrosine kinases.

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4.  An electrostatic network and long-range regulation of Src kinases.

Authors:  Elif Ozkirimli; Shalini S Yadav; W Todd Miller; Carol Beth Post
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5.  Crystal structure of the Src family tyrosine kinase Hck.

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  16 in total

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Review 4.  Dynamic regulatory features of the protein tyrosine kinases.

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5.  Mechanical force can enhance c-Src kinase activity by impairing autoinhibition.

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Review 6.  Allostery, and how to define and measure signal transduction.

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8.  Glycine substitution in SH3-SH2 connector of Hck tyrosine kinase causes population shift from assembled to disassembled state.

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9.  A Catalytically Disabled Double Mutant of Src Tyrosine Kinase Can Be Stabilized into an Active-Like Conformation.

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10.  Redefining the Protein Kinase Conformational Space with Machine Learning.

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