Literature DB >> 29441404

PDGF-induced migration of synthetic vascular smooth muscle cells through c-Src-activated L-type Ca2+ channels with full-length CaV1.2 C-terminus.

Xiaoguang Guo1,2, Toshihide Kashihara1, Tsutomu Nakada1, Toshifumi Aoyama2, Mitsuhiko Yamada3.   

Abstract

In atherosclerosis, vascular smooth muscle cells (VSMC) migrate from the media toward the intima of the arteries in response to cytokines, such as platelet-derived growth factor (PDGF). However, molecular mechanism underlying the PDGF-induced migration of VSMCs remains unclear. The migration of rat aorta-derived synthetic VSMCs, A7r5, in response to PDGF was potently inhibited by a CaV1.2 channel inhibitor, nifedipine, and a Src family tyrosine kinase (SFK)/Abl inhibitor, bosutinib, in a less-than-additive manner. PDGF significantly increased CaV1.2 channel currents without altering CaV1.2 protein expression levels in A7r5 cells. This reaction was inhibited by C-terminal Src kinase, a selective inhibitor of SFKs. In contractile VSMCs, the C-terminus of CaV1.2 is proteolytically cleaved into proximal and distal C-termini (PCT and DCT, respectively). Clipped DCT is noncovalently reassociated with PCT to autoinhibit the channel activity. Conversely, in synthetic A7r5 cells, full-length CaV1.2 (CaV1.2FL) is expressed much more abundantly than truncated CaV1.2. In a heterologous expression system, c-Src activated CaV1.2 channels composed of CaV1.2FL but not truncated CaV1.2 (CaV1.2Δ1763) or CaV1.2Δ1763 plus clipped DCT. Further, c-Src enhanced the coupling efficiency between the voltage-sensing domain and activation gate of CaV1.2FL channels by phosphorylating Tyr1709 and Tyr1758 in PCT. Compared with CaV1.2Δ1763, c-Src could more efficiently bind to and phosphorylate CaV1.2FL irrespective of the presence or absence of clipped DCT. Therefore, in atherosclerotic lesions, phenotypic switching of VSMCs may facilitate pro-migratory effects of PDGF on VSMCs by suppressing posttranslational CaV1.2 modifications.

Entities:  

Keywords:  CaV1.2 channels; Platelet-derived growth factor; Vascular smooth muscle cells; c-Src

Mesh:

Substances:

Year:  2018        PMID: 29441404     DOI: 10.1007/s00424-018-2114-3

Source DB:  PubMed          Journal:  Pflugers Arch        ISSN: 0031-6768            Impact factor:   3.657


  36 in total

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3.  Molecular mechanism of calcium channel regulation in the fight-or-flight response.

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4.  Modification of Ca2+ channel activity by deletions at the carboxyl terminus of the cardiac alpha 1 subunit.

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Journal:  J Biol Chem       Date:  1994-01-21       Impact factor: 5.157

5.  Angiotensin II activates CaV 1.2 Ca2+ channels through β-arrestin2 and casein kinase 2 in mouse immature cardiomyocytes.

Authors:  Toshihide Kashihara; Tsutomu Nakada; Katsuhiko Kojima; Toshikazu Takeshita; Mitsuhiko Yamada
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6.  Effect of the new calcium antagonist lercanidipine and its enantiomers on the migration and proliferation of arterial myocytes.

Authors:  A Corsini; M Bonfatti; P Quarato; M R Accomazzo; M Raiteri; A Sartani; R Testa; S Nicosia; R Paoletti; R Fumagalli
Journal:  J Cardiovasc Pharmacol       Date:  1996-11       Impact factor: 3.105

7.  Optogenetic toolkit reveals the role of Ca2+ sparklets in coordinated cell migration.

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8.  High blood pressure upregulates arterial L-type Ca2+ channels: is membrane depolarization the signal?

Authors:  Aleksandra Pesic; Jane A Madden; Miodrag Pesic; Nancy J Rusch
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9.  COOH-terminal association of human smooth muscle calcium channel Ca(v)1.2b with Src kinase protein binding domains: effect of nitrotyrosylation.

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Journal:  Am J Physiol Cell Physiol       Date:  2007-10-17       Impact factor: 4.249

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Review 3.  Protein Kinase A in cellular migration-Niche signaling of a ubiquitous kinase.

Authors:  Kathryn V Svec; Alan K Howe
Journal:  Front Mol Biosci       Date:  2022-07-22

4.  Activation of BK Channel Contributes to PL-Induced Mesenchymal Stem Cell Migration.

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Journal:  Front Physiol       Date:  2020-03-24       Impact factor: 4.566

  4 in total

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