| Literature DB >> 31936855 |
Miguel A S Martín-Aragón Baudel1, Jian Shi2, William A Large3, Anthony P Albert3.
Abstract
In vascular smooth muscle cells (VMSCs), the stimulation of store-operated channels (SOCs) mediate Ca2+ influx pathways which regulate important cellular functions including contraction, proliferation, migration, and growth that are associated with the development of vascular diseases. It is therefore important that we understand the biophysical, molecular composition, activation pathways, and physiological significance of SOCs in VSMCs as these maybe future therapeutic targets for conditions such as hypertension and atherosclerosis. Archetypal SOCs called calcium release-activated channels (CRACs) are composed of Orai1 proteins and are stimulated by the endo/sarcoplasmic reticulum Ca2+ sensor stromal interaction molecule 1 (STIM1) following store depletion. In contrast, this review focuses on proposals that canonical transient receptor potential (TRPC) channels composed of a heteromeric TRPC1/C5 molecular template, with TRPC1 conferring activation by store depletion, mediate SOCs in native contractile VSMCs. In particular, it summarizes our recent findings which describe a novel activation pathway of these TRPC1-based SOCs, in which protein kinase C (PKC)-dependent TRPC1 phosphorylation and phosphatidylinositol 4,5-bisphosphate (PIP2) are obligatory for channel opening. This PKC- and PIP2-mediated gating mechanism is regulated by the PIP2-binding protein myristoylated alanine-rich C kinase (MARCKS) and is coupled to store depletion by TRPC1-STIM1 interactions which induce Gq/PLCβ1 activity. Interestingly, the biophysical properties and activation mechanisms of TRPC1-based SOCs in native contractile VSMCs are unlikely to involve Orai1.Entities:
Keywords: Gq; MARCKS; Orai1; PIP2; PKC; PLC; STIM1; TRPC1; store-operated channels; vascular smooth muscle
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Year: 2020 PMID: 31936855 PMCID: PMC7017204 DOI: 10.3390/cells9010179
Source DB: PubMed Journal: Cells ISSN: 2073-4409 Impact factor: 6.600
Figure 1Proposed model of TRPC1-based store-operated channels (SOCs) in native contractile vascular smooth muscle cells (VSMCs). A, Receptor stimulation of distinct Gq-PLC and Gβγ-PI3K-PIP3 pathways lead to PKC-dependent phosphorylation of TRPC1 and channel opening by PIP2 and PIP3 respectively. Local levels of PIP2 involved in channel activation is controlled by MARCKS (M). B, Store depletion by receptor-mediated IP3 generation and store depleting agents such as CPA, BAPTA and TPEN activate TRPC1-based SOCs through a STIM1-TRPC1-mediated pathway. In unstimulated cells, SR Ca2+ stores are full and TRPC1-based SOCs are in a closed state. In this configuration, channels are associated with MARCKS which buffers local PIP2 levels and do not interact with Gq, PLCβ1 or STIM1. Following SR Ca2+ depletion, STIM1 (red) is activated and translocates from the SR to the plasma membrane where it interacts with TRPC1. Formation of STIM1-TRPC1 interactions enable binding and activation of Gq and PLCβ1 activity, PIP2 hydrolysis, DAG generation, stimulation PKCδ and PKC-dependent phosphorylation of TRPC1. This leads to dissociation of MARCKS from TRPC1 and release of PIP2 (previously protected from PIP2 hydrolysis) into the local environment where it acts as the activating ligand.