Angiotensin II rapidly induced Ca2+-dependent tyrosine phosphorylation of PYK2, which formed a complex with c-Src to mediate EGFR transactivation and ERK activation in rat vascular smooth muscle cells.
The study demonstrates that the AT1 receptor uses Ca2+-dependent PYK2 to activate c-Src, leading to EGFR transactivation in rat vascular smooth muscle cells.
-PYK2, a recently identified Ca2+-sensitive tyrosine kinase, has been implicated in extracellular signal-regulated kinase (ERK) activation via several G protein-coupled receptors. We have reported that angiotensin II (Ang II) induces Ca2+-dependent transactivation of the epidermal growth factor receptor (EGFR) which serves as a scaffold for preactivated c-Src and downstream adaptors (Shc/Grb2), leading to ERK activation in cultured rat vascular smooth muscle cells (VSMC). Herein we demonstrate the involvement of PYK2 in this cascade. Ang II rapidly induced tyrosine phosphorylation of PYK2, whose effect was completely inhibited by an AT1 receptor antagonist and an intracellular Ca2+ chelator. A Ca2+ ionophore also induced PYK2 tyrosine phosphorylation to a level comparable with that by Ang II, whereas phorbol ester-induced phosphorylation was less than that by Ang II. Moreover, PYK2 formed a complex coprecipitable with catalytically active c-Src after Ang II stimulation. Although a selective EGFR kinase inhibitor completely abolished Ang II-induced recruitment of Grb2 to EGFR and markedly attenuated Ang II-induced ERK activation, it had no effect on Ang II-induced PYK2 tyrosine phosphorylation or its association with c-Src and Grb2. These data suggest that the AT1 receptor uses Ca2+-dependent PYK2 to activate c-Src, thereby leading to EGFR transactivation, which preponderantly recruits Grb2 in rat VSMC.
Eguchi et al. (Fri,) reported a other. Angiotensin II was evaluated on PYK2 tyrosine phosphorylation and complex formation. Angiotensin II rapidly induced Ca2+-dependent tyrosine phosphorylation of PYK2, which formed a complex with c-Src to mediate EGFR transactivation and ERK activation in rat vascular smooth muscle cells.
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