GCKIII 激酶通过共同的作用模式控制肝细胞脂质稳态

IF 5 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Emmelie Cansby, Mara Caputo, Emma Andersson, Rasool Saghaleyni, Marcus Henricsson, Ying Xia, Bernice Asiedu, Matthias Blüher, L Thomas Svensson, Andrew J Hoy, Margit Mahlapuu
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引用次数: 0

摘要

代谢功能障碍相关脂肪性肝病(MASLD)已成为全球慢性肝病的主要病因。我们最近的转化研究表明,由 GCKIII 亚家族组成的 STE20 型激酶 - MST3、STK25 和 MST4 - 与肝脏脂滴相关联,并调控肝脏中的异位脂肪储存;然而,这些蛋白的作用模式仍有待解决。通过比较在永生化人类肝细胞中沉默 MST3、STK25 和/或 MST4 的不同组合,我们发现单个敲除它们会导致类似的肝细胞脂质含量和代谢压力的降低,而同时敲除所有三个激酶则不会产生任何叠加或协同效应。对人类肝细胞库进行的全基因组酵母双杂交筛选发现了几个有助于 GCKIII 介导的肝脏脂质平衡调节的相互作用伙伴,即保护 MST3、STK25 和 MST4 免受降解的 PDCD10、通过磷酸化调节其活性的 MAP4K4 以及通过构象变化控制其作用的 HSD17B11。最后,通过微流控芯片上的体外激酶检测,我们确定了被 GCKIII 激酶磷酸化的各种下游靶标,这些靶标在脂肪生成、脂肪分解、脂质分泌以及葡萄糖摄取、糖酵解、己胺合成和泛素化中具有已知的功能。这项研究共同证明,GCKIII 激酶亚家族成员通过共同的途径调控肝细胞脂质代谢。研究结果揭示了 MST3、STK25 和 MST4 及其与 PDCD10、MAP4K4 和 HSD17B11 的相互作用在控制肝脏脂质稳态和 MASLD 易感性中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GCKIII kinases control hepatocellular lipid homeostasis via shared mode of action.

Metabolic dysfunction-associated steatotic liver disease has emerged as a leading global cause of chronic liver disease. Our recent translational investigations have shown that the STE20-type kinases comprising the GCKIII subfamily-MST3, STK25, and MST4-associate with hepatic lipid droplets and regulate ectopic fat storage in the liver; however, the mode of action of these proteins remains to be resolved. By comparing different combinations of the silencing of MST3, STK25, and/or MST4 in immortalized human hepatocytes, we found that their single knockdown results in a similar reduction in hepatocellular lipid content and metabolic stress, without any additive or synergistic effects observed when all three kinases are simultaneously depleted. A genome-wide yeast two-hybrid screen of the human hepatocyte library identified several interaction partners contributing to the GCKIII-mediated regulation of liver lipid homeostasis, that is, PDCD10 that protects MST3, STK25, and MST4 from degradation, MAP4K4 that regulates their activity via phosphorylation, and HSD17B11 that controls their action via a conformational change. Finally, using in vitro kinase assays on microfluidic microarrays, we pinpointed various downstream targets that are phosphorylated by the GCKIII kinases, with known functions in lipogenesis, lipolysis, and lipid secretion, as well as glucose uptake, glycolysis, hexosamine synthesis, and ubiquitination. Together, this study demonstrates that the members of the GCKIII kinase subfamily regulate hepatocyte lipid metabolism via common pathways. The results shed new light on the role of MST3, STK25, and MST4, as well as their interactions with PDCD10, MAP4K4, and HSD17B11, in the control of liver lipid homeostasis and metabolic dysfunction-associated steatotic liver disease susceptibility.

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来源期刊
Journal of Lipid Research
Journal of Lipid Research 生物-生化与分子生物学
CiteScore
11.10
自引率
4.60%
发文量
146
审稿时长
41 days
期刊介绍: The Journal of Lipid Research (JLR) publishes original articles and reviews in the broadly defined area of biological lipids. We encourage the submission of manuscripts relating to lipids, including those addressing problems in biochemistry, molecular biology, structural biology, cell biology, genetics, molecular medicine, clinical medicine and metabolism. Major criteria for acceptance of articles are new insights into mechanisms of lipid function and metabolism and/or genes regulating lipid metabolism along with sound primary experimental data. Interpretation of the data is the authors’ responsibility, and speculation should be labeled as such. Manuscripts that provide new ways of purifying, identifying and quantifying lipids are invited for the Methods section of the Journal. JLR encourages contributions from investigators in all countries, but articles must be submitted in clear and concise English.
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