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Published on: June 8, 2022
CaMKIIδ-dependent inhibition of cAMP-response element-binding protein activity in vascular smooth muscle
Yongfeng Liu1, Li-Yan Sun1, Diane V Singer1
1Center for Cardiovascular Sciences, Albany Medical College, Albany, New York 12208.
Abstract:
One transcription factor mediator of Ca(2+)-signals is cAMP response element-binding protein (CREB). CREB expression and/or activity negatively correlates with vascular smooth muscle (VSM) cell proliferation and migration. Multifunctional Ca(2+)/calmodulin-dependent protein kinases, including CaMKII, have been demonstrated to regulate CREB activity through both positive and negative phosphorylation events in vitro, but the function of CaMKII as a proximal regulator of CREB in intact cell systems, including VSM, is not clear. In this study, we used gain- and loss-of-function approaches to determine the function of CaMKIIδ in regulating CREB phosphorylation, localization, and activity in VSM. Overexpression of constitutively active CaMKIIδ specifically increased CREB phosphorylation on Ser(142) and silencing CaMKIIδ expression by siRNA or blocking endogenous CaMKII activity with KN93 abolished thrombin- or ionomycin-induced CREB phosphorylation on Ser(142) without affecting Ser(133) phosphorylation. CREB-Ser(142) phosphorylation correlated with transient nucleocytoplasmic translocation of CREB. Thrombin-induced CREB promoter activity, CREB binding to Sik1 and Rgs2 promoters, and Sik1/Rgs2 transcription were enhanced by a kinase-negative CaMKIIδ2 (K43A) mutant and inhibited by a constitutively active (T287D) mutant. Taken together, these studies establish negative regulation of CREB activity by endogenous CaMKIIδ-dependent CREB-Ser(142) phosphorylation and suggest a potential mechanism for CaMKIIδ/CREB signaling in modulating proliferation and migration in VSM cells.
Insights
Calcium signaling regulates vascular smooth muscle cell behavior via CREB. CaMKIIδ negatively controls CREB activity by phosphorylating Ser(142), impacting cell proliferation and migration.
Area of Science:
- Molecular Biology
- Cell Biology
- Cardiovascular Research
Background:
- cAMP response element-binding protein (CREB) is a transcription factor mediating calcium (Ca2+) signals.
- CREB activity is inversely related to vascular smooth muscle (VSM) cell proliferation and migration.
- Ca2+/calmodulin-dependent protein kinase II (CaMKII) is known to regulate CREB activity in vitro, but its role in intact VSM cells is unclear.
Purpose of the Study:
- To investigate the function of CaMKIIδ in regulating CREB phosphorylation, localization, and activity in VSM cells.
- To determine if CaMKIIδ acts as a proximal regulator of CREB in VSM.
Main Methods:
- Gain- and loss-of-function approaches were employed in VSM cells.
- Specific manipulations included overexpression of constitutively active CaMKIIδ and silencing CaMKIIδ using siRNA.
- Inhibition of endogenous CaMKII activity was achieved using KN93.
Main Results:
- Overexpression of active CaMKIIδ increased CREB phosphorylation at Ser(142).
- CaMKIIδ silencing or inhibition abolished thrombin/ionomycin-induced CREB Ser(142) phosphorylation, without affecting Ser(133).
- CREB Ser(142) phosphorylation correlated with CREB translocation to the nucleus and modulated CREB promoter activity and target gene transcription.
Conclusions:
- CaMKIIδ negatively regulates CREB activity through phosphorylation at Ser(142) in VSM cells.
- This CaMKIIδ-dependent CREB phosphorylation pathway suggests a mechanism influencing VSM cell proliferation and migration.
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