Effects of coding variants in the glucokinase regulatory protein gene on hepatic glucose and triglyceride metabolism suggest a gene regulatory function of glucokinase

IF 11.9 1区 医学 Q1 ENDOCRINOLOGY & METABOLISM Metabolism: clinical and experimental Pub Date : 2025-05-01 Epub Date: 2025-01-31 DOI:10.1016/j.metabol.2025.156150
Sara Langer , David Jagdhuhn , Rica Waterstradt , Jessica Gromoll , Michael Müller , Matthew G. Rees , Anna L. Gloyn , Simone Baltrusch
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Abstract

Background

Regulation of glucose metabolism after a meal is the major task of hepatic glucokinase (GCK). Inhibition and nuclear retention of glucokinase during fasting is achieved by glucokinase regulatory protein (GKRP). Compounds disrupting the GCK-GKRP interaction alter glucose but not triglyceride levels, whilst GKRP coding alleles lower glucose but elevate triglycerides. The aim of this study was to identify yet unknown functions of GKRP by examining human variants both rare (p.Q234P, p.H438Y) and common (p.P446L).

Methods

Fluorescently labelled human GKRP variant and GCK proteins were expressed in hepatoma cells or primary mouse hepatocytes to investigate the subcellular localization of both proteins, cellular glucose uptake, and triglyceride levels. Mutational effects on GKRP protein structure were analyzed with PyMOL. Nuclear-to-cytoplasmic distribution of the GCK-GKRP complex was modeled in MATLAB.

Results

Nuclear localization of the GKRP variants was decreased compared to wild-type. Only H438Y-GKRP still evoked WT-like GCK nuclear accumulation. Nuclear localization of Q234P-GKRP was most impaired and depended on the presence of GCK, which, supported by structural analyses, could stabilize its conformation. Nonetheless, inhibition of glucose uptake was least impaired with Q234P-GKRP. Triglyceride contents related to the glucose uptake of hepatoma cells were disproportionately high for cells expressing wild-type or H438Y-GKRP, the two variants that induced higher nuclear sequestration of GCK.

Conclusions

Our results, supported by a modeling approach, suggest that GKRP-mediated nuclear localization of GCK has a function in liver metabolism beyond GCK inhibition and sequestration. This needs further elucidation given that GKRP disruptors have been proposed for antihyperglycemic therapy.

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葡萄糖激酶调控蛋白基因编码变异对肝脏葡萄糖和甘油三酯代谢的影响提示葡萄糖激酶的基因调控功能。
背景:调节餐后葡萄糖代谢是肝葡萄糖激酶(GCK)的主要任务。空腹期间葡萄糖激酶的抑制和核保留是由葡萄糖激酶调节蛋白(GKRP)实现的。破坏GCK-GKRP相互作用的化合物改变葡萄糖但不改变甘油三酯水平,而GKRP编码等位基因降低葡萄糖但升高甘油三酯。本研究的目的是通过检测罕见的(p.p q234p, p.p h438y)和常见的(p.p p446l)人类变体来鉴定尚不清楚的GKRP功能。方法:在肝癌细胞或小鼠原代肝细胞中表达荧光标记的人GKRP变体和GCK蛋白,以研究这两种蛋白的亚细胞定位、细胞葡萄糖摄取和甘油三酯水平。用PyMOL分析突变对GKRP蛋白结构的影响。在MATLAB中模拟GCK-GKRP复合物的核-胞质分布。结果:与野生型相比,GKRP变异的核定位降低。只有H438Y-GKRP仍能引起wt样的GCK核积累。Q234P-GKRP的核定位受损最严重,依赖于GCK的存在,结构分析支持GCK可以稳定其构象。然而,Q234P-GKRP对葡萄糖摄取的抑制作用损害最小。在表达野生型或H438Y-GKRP的细胞中,与肝癌细胞葡萄糖摄取相关的甘油三酯含量不成比例地高,这两种变体诱导更高的GCK核隔离。结论:我们的研究结果得到了建模方法的支持,表明gkrp介导的GCK核定位在肝脏代谢中具有GCK抑制和隔离之外的功能。鉴于GKRP干扰物已被提议用于降糖治疗,这需要进一步阐明。
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来源期刊
Metabolism: clinical and experimental
Metabolism: clinical and experimental 医学-内分泌学与代谢
CiteScore
18.90
自引率
3.10%
发文量
310
审稿时长
16 days
期刊介绍: Metabolism upholds research excellence by disseminating high-quality original research, reviews, editorials, and commentaries covering all facets of human metabolism. Consideration for publication in Metabolism extends to studies in humans, animal, and cellular models, with a particular emphasis on work demonstrating strong translational potential. The journal addresses a range of topics, including: - Energy Expenditure and Obesity - Metabolic Syndrome, Prediabetes, and Diabetes - Nutrition, Exercise, and the Environment - Genetics and Genomics, Proteomics, and Metabolomics - Carbohydrate, Lipid, and Protein Metabolism - Endocrinology and Hypertension - Mineral and Bone Metabolism - Cardiovascular Diseases and Malignancies - Inflammation in metabolism and immunometabolism
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