Interaction among estrogen, IGF-1, and H2S on smooth muscle cell proliferation
Tian Shuang1,2,3, Ming Fu1,2,4, Guangdong Yang1,5
1Cardiovascular and Metabolic Research Unit, Laurentian University, Ontario, Canada.
Abstract:
Both estrogen and hydrogen sulfide (H2S) inhibit the proliferation of vascular smooth muscle cells (SMCs) and development of atherosclerosis. In the absence of endogenous H2S as occurred in CSE-knockout (KO) mouse, however, estrogen stimulates the proliferation of vascular SMCs. The underlying mechanisms for this seemingly controversial vascular effect of estrogen are unclear. In the present study, we demonstrated that the stimulatory effect of estrogen on the proliferation of CSE-KO SMCs was suppressed by the inhibitor of insulin-like growth factor-1 receptor (IGF-1R) or knockdown of IGF-1R protein expression. Estrogen downregulated the expression of insulin-like growth factor-1 (IGF-1) and IGF-1R in aortic tissues or aortic SMCs isolated from WT and CSE-KO mice. Furthermore, endogenous H2S downregulated IGF-1R, but upregulated estrogen receptor (ER)-α, in aortic tissues or SMCs. ER-α and IGF-1R were co-located in SMCs and co-immunoprecipitated, which was decreased by H2S. Finally, both endogenous and exogenous H2S induced the S-sulfhydration of IGF-1R, but not ER-α, in WT-SMCs and CSE-KO SMCs, which underlies the decreased formation of IGF-1R/ER-α hybrid in the presence of H2S. Thus, the absence of H2S favors the interaction of estrogen with IGF-1R/ER-α hybrid to stimulate SMCs proliferation. The appreciation of a critical role of H2S in preventing estrogen-induced SMCs proliferation will help better understand the regulation of complex vascular effects of estrogen and sex-related cardiovascular diseases.
Insights
Hydrogen sulfide (H2S) absence allows estrogen to stimulate vascular smooth muscle cell proliferation by promoting estrogen receptor-alpha and IGF-1R interaction. H2S normally prevents this interaction, protecting against atherosclerosis.
Area of Science:
- Cardiovascular Biology
- Endocrinology
- Biochemistry
Background:
- Estrogen and hydrogen sulfide (H2S) typically inhibit vascular smooth muscle cell (SMC) proliferation and atherosclerosis.
- Estrogen paradoxically stimulates SMC proliferation in the absence of endogenous H2S, a mechanism requiring elucidation.
Purpose of the Study:
- To investigate the underlying mechanisms of estrogen's controversial vascular effects in the absence of H2S.
- To determine the role of insulin-like growth factor-1 receptor (IGF-1R) and its interaction with estrogen receptor-alpha (ER-α) in H2S-deficient conditions.
Main Methods:
- Utilized CSE-knockout (KO) mice to study H2S deficiency.
- Employed IGF-1R inhibitors and knockdown techniques.
- Analyzed protein expression, co-localization, and co-immunoprecipitation of ER-α and IGF-1R.
- Investigated H2S-induced S-sulfhydration of IGF-1R.
Main Results:
- Estrogen-stimulated proliferation of CSE-KO SMCs was inhibited by targeting IGF-1R.
- Estrogen downregulated IGF-1 and IGF-1R expression.
- Endogenous H2S downregulated IGF-1R and upregulated ER-α.
- H2S decreased the interaction between ER-α and IGF-1R by S-sulfhydration of IGF-1R.
Conclusions:
- The absence of H2S facilitates estrogen-induced SMC proliferation via an ER-α/IGF-1R hybrid.
- H2S plays a critical role in preventing estrogen-mediated SMC proliferation.
- Understanding this mechanism is vital for comprehending estrogen's vascular effects and sex-related cardiovascular diseases.
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