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盐诱导激酶抑制促进脂肪细胞产热程序和脂肪组织棕色化。

Salt-inducible kinase inhibition promotes the adipocyte thermogenic program and adipose tissue browning.

机构信息

Division of Cardiovascular Medicine, Department of Medicine, Vanderbilt University Medical Center, Nashville, TN 37232, USA.

Division of Cardiovascular Medicine, Department of Medicine, Vanderbilt University Medical Center, Nashville, TN 37232, USA; Department of Physiology and Biophysics, Institute of Biomedical Sciences, University of Sao Paulo, Sao Paulo 05508-000, Brazil.

出版信息

Mol Metab. 2023 Aug;74:101753. doi: 10.1016/j.molmet.2023.101753. Epub 2023 Jun 13.

Abstract

OBJECTIVE

Norepinephrine stimulates the adipose tissue thermogenic program through a β-adrenergic receptor (βAR)-cyclic adenosine monophosphate (cAMP)-protein kinase A (PKA) signaling cascade. We discovered that a noncanonical activation of the mechanistic target of rapamycin complex 1 (mTORC1) by PKA is required for the βAR-stimulation of adipose tissue browning. However, the downstream events triggered by PKA-phosphorylated mTORC1 activation that drive this thermogenic response are not well understood.

METHODS

We used a proteomic approach of Stable Isotope Labeling by/with Amino acids in Cell culture (SILAC) to characterize the global protein phosphorylation profile in brown adipocytes treated with the βAR agonist. We identified salt-inducible kinase 3 (SIK3) as a candidate mTORC1 substrate and further tested the effect of SIK3 deficiency or SIK inhibition on the thermogenic gene expression program in brown adipocytes and in mouse adipose tissue.

RESULTS

SIK3 interacts with RAPTOR, the defining component of the mTORC1 complex, and is phosphorylated at Ser in a rapamycin-sensitive manner. Pharmacological SIK inhibition by a pan-SIK inhibitor (HG-9-91-01) in brown adipocytes increases basal Ucp1 gene expression and restores its expression upon blockade of either mTORC1 or PKA. Short-hairpin RNA (shRNA) knockdown of Sik3 augments, while overexpression of SIK3 suppresses, Ucp1 gene expression in brown adipocytes. The regulatory PKA phosphorylation domain of SIK3 is essential for its inhibition. CRISPR-mediated Sik3 deletion in brown adipocytes increases type IIa histone deacetylase (HDAC) activity and enhances the expression of genes involved in thermogenesis such as Ucp1, Pgc1α, and mitochondrial OXPHOS complex protein. We further show that HDAC4 interacts with PGC1α after βAR stimulation and reduces lysine acetylation in PGC1α. Finally, a SIK inhibitor well-tolerated in vivo (YKL-05-099) can stimulate the expression of thermogenesis-related genes and browning of mouse subcutaneous adipose tissue.

CONCLUSIONS

Taken together, our data reveal that SIK3, with the possible contribution of other SIKs, functions as a phosphorylation switch for β-adrenergic activation to drive the adipose tissue thermogenic program and indicates that more work to understand the role of the SIKs is warranted. Our findings also suggest that maneuvers targeting SIKs could be beneficial for obesity and related cardiometabolic disease.

摘要

目的

去甲肾上腺素通过β肾上腺素能受体(βAR)-环磷酸腺苷(cAMP)-蛋白激酶 A(PKA)信号级联刺激脂肪组织产热程序。我们发现,PKA 对雷帕霉素靶蛋白复合物 1(mTORC1)的非典型激活是βAR 刺激脂肪组织褐变所必需的。然而,PKA 磷酸化 mTORC1 激活引发的下游事件尚不清楚。

方法

我们使用稳定同位素标记的细胞培养物(SILAC)的蛋白质组学方法来描述用βAR 激动剂处理的棕色脂肪细胞中的全局蛋白磷酸化谱。我们鉴定出盐诱导激酶 3(SIK3)为 mTORC1 底物的候选物,并进一步测试了 SIK3 缺失或 SIK 抑制对棕色脂肪细胞和小鼠脂肪组织中产热基因表达程序的影响。

结果

SIK3 与 RAPTOR 相互作用,RAPTOR 是 mTORC1 复合物的定义成分,并且以 rapamycin 敏感的方式在 Ser 处磷酸化。在棕色脂肪细胞中,通过泛 SIK 抑制剂(HG-9-91-01)进行的药理学 SIK 抑制增加了基础 Ucp1 基因的表达,并在阻断 mTORC1 或 PKA 时恢复其表达。棕色脂肪细胞中 SIK3 的短发夹 RNA(shRNA)敲低增强 Ucp1 基因的表达,而过表达 SIK3 则抑制 Ucp1 基因的表达。SIK3 的调节性 PKA 磷酸化结构域对于其抑制是必需的。CRISPR 介导的棕色脂肪细胞中 Sik3 的缺失增加了 IIa 型组蛋白去乙酰化酶(HDAC)的活性,并增强了产热相关基因(如 Ucp1、Pgc1α 和线粒体 OXPHOS 复合物蛋白)的表达。我们进一步表明,βAR 刺激后 HDAC4 与 PGC1α 相互作用,并降低 PGC1α 中的赖氨酸乙酰化。最后,体内耐受性良好的 SIK 抑制剂(YKL-05-099)可刺激与产热相关的基因表达和小鼠皮下脂肪组织的褐变。

结论

总之,我们的数据表明,SIK3(可能还有其他 SIKs 的贡献)作为β肾上腺素能激活的磷酸化开关,驱动脂肪组织产热程序,并表明需要进一步研究 SIKs 的作用。我们的发现还表明,针对 SIKs 的操作可能有益于肥胖和相关的代谢性心血管疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69d1/10319839/5a1927a2f71a/ga1.jpg

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