PLC beta 3 Gq

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'''Overview of the PLC-β3 and Gαq interface:'''
'''Overview of the PLC-β3 and Gαq interface:'''
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The Gαq subunit consists two domains, one is <scene name='70/701452/the Gtpase_domain/2'>GTPase domain</scene> and the other is the alpha helical domain. These domains include three regions called <scene name='70/701452/Fig2/7'>switch regions I-III</scene>.These regions allows the Gαq to be released from the receptor and activate distinct downstream effectors, which carry on the signal to downstream targets. A central effector of Gαq being the PLC-β3 enzyme. The switch regions I and II interact with several domains in PLC-β3.
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The Gαq subunit consists two domains, one is <scene name='70/701452/Gtpase_domain/2'>the GTPase domain</scene> and the other is the alpha helical domain. These domains include three regions called <scene name='70/701452/Fig2/7'>switch regions I-III</scene>.These regions allows the Gαq to be released from the receptor and activate distinct downstream effectors, which carry on the signal to downstream targets. A central effector of Gαq being the PLC-β3 enzyme. The switch regions I and II interact with several domains in PLC-β3.
<scene name='70/701452/Fig1/9'>The PLC-β3 has several domains</scene> consisting of N-terminal PH domain, a series of four EF hands, a catalytic TIM barrel that the X/Y linker connect its two halves and a C2 domain.
<scene name='70/701452/Fig1/9'>The PLC-β3 has several domains</scene> consisting of N-terminal PH domain, a series of four EF hands, a catalytic TIM barrel that the X/Y linker connect its two halves and a C2 domain.

Revision as of 12:32, 1 August 2015

Unique bidirectional interactions of Phospholipase C beta 3 with G alpha Q

Caption for this structure

Drag the structure with the mouse to rotate

References

  1. Waldo GL, Ricks TK, Hicks SN, Cheever ML, Kawano T, Tsuboi K, Wang X, Montell C, Kozasa T, Sondek J, Harden TK. Kinetic Scaffolding Mediated by a Phospholipase C-{beta} and Gq Signaling Complex. Science. 2010 Nov 12;330(6006):974-80. Epub 2010 Oct 21. PMID:20966218 doi:10.1126/science.1193438
  2. Lyon AM, Tesmer JJ. Structural insights into phospholipase C-beta function. Mol Pharmacol. 2013 Oct;84(4):488-500. doi: 10.1124/mol.113.087403. Epub 2013 Jul, 23. PMID:23880553 doi:http://dx.doi.org/10.1124/mol.113.087403
  3. Waldo GL, Ricks TK, Hicks SN, Cheever ML, Kawano T, Tsuboi K, Wang X, Montell C, Kozasa T, Sondek J, Harden TK. Kinetic Scaffolding Mediated by a Phospholipase C-{beta} and Gq Signaling Complex. Science. 2010 Nov 12;330(6006):974-80. Epub 2010 Oct 21. PMID:20966218 doi:10.1126/science.1193438

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