The Structure of PI3K: Difference between revisions

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====Src Homology 2 (SH2) Domains====
====Src Homology 2 (SH2) Domains====
<scene name='User:David_Canner/Sandbox_P/Sh2_open/1'>PI3K has two SH2 domains</scene>, an N-terminal (nSH2) domain and a C-terminal (CSH2) domain. <ref name="Flip"/> Both domains recognize similar consensus phosphorylated tyrosine motifs with the pattern: pY-V-X-M in activated receptors and adaptor proteins like PDGF, erbB3, c-Kit and CSF-1 receptors. <ref name="Weber">PMID:11123912</ref> It is upon the interaction of receptor and SH2 domain that the heterodimeric PI3K complex is activated. <ref name="Miled"> The <scene name='User:David_Canner/Sandbox_P/Sh2/2'>docking site for receptor in NSH2 is defined by the conserved residues Arg 340, Arg 358, and Thr 371</scene> ([[2iui]]), all of which coordinate the phosphorylated tyrosoine phosphate group.<ref name="Nolte"> PMID:8599763</ref> nSH2 was found to interact with the catalytic subunit directly, forming a broad-based scaffold for p110α and coordinates communication between the interacting domains. (Discussed Below). <ref name="Amzel"/>
<scene name='User:David_Canner/Sandbox_P/Sh2_open/1'>PI3K has two SH2 domains</scene>, an N-terminal (nSH2) domain and a C-terminal (CSH2) domain. <ref name="Flip"/> Both domains recognize similar consensus phosphorylated tyrosine motifs with the pattern: pY-V-X-M in activated receptors and adaptor proteins like PDGF, erbB3, c-Kit and CSF-1 receptors. <ref name="Weber">PMID:11123912</ref> It is upon the interaction of receptor and SH2 domain that the heterodimeric PI3K complex is activated. <ref name="Miled"/> The <scene name='User:David_Canner/Sandbox_P/Sh2/2'>docking site for receptor in NSH2 is defined by the conserved residues Arg 340, Arg 358, and Thr 371</scene> ([[2iui]]), all of which coordinate the phosphorylated tyrosoine phosphate group.<ref name="Nolte"> PMID:8599763</ref> nSH2 was found to interact with the catalytic subunit directly, forming a broad-based scaffold for p110α and coordinates communication between the interacting domains. (Discussed Below). <ref name="Amzel"/>
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Revision as of 06:46, 15 November 2010

Structure of PI3K

Class I PI3Ks, which are tightly regulated by tyrosine kinases, are composed of an 85kDa regulatory/adapter subunit (p85) and a 110kDa catalytic subunit (p110). [1]

Adapter Subunit

Structure of PI3K p110, (3hhm)

Drag the structure with the mouse to rotate

The Catalytic Subunit

Structure of PI3K p110, (3hhm)

Drag the structure with the mouse to rotate

References

  1. Hoedemaeker FJ, Siegal G, Roe SM, Driscoll PC, Abrahams JP. Crystal structure of the C-terminal SH2 domain of the p85alpha regulatory subunit of phosphoinositide 3-kinase: an SH2 domain mimicking its own substrate. J Mol Biol. 1999 Oct 1;292(4):763-70. PMID:10525402 doi:https://dx.doi.org/10.1006/jmbi.1999.3111


Proteopedia Page Contributors and Editors (what is this?)

David Canner, Hannah Campbell, Eran Hodis, Alexander Berchansky, Michal Harel