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骨骼肌中H6PDH和11β-HSD1功能的细胞和遗传模型。

Cellular and genetic models of H6PDH and 11β-HSD1 function in skeletal muscle.

作者信息

Zielinska Agnieszka E, Fletcher Rachel S, Sherlock Mark, Doig Craig L, Lavery Gareth G

机构信息

Institute of Metabolism and Systems Research, University of Birmingham, Birmingham, UK.

Centre for Endocrinology, Diabetes and Metabolism, Birmingham Health Partners, Birmingham, UK.

出版信息

Cell Biochem Funct. 2017 Jul;35(5):269-277. doi: 10.1002/cbf.3272.

Abstract

Glucocorticoids are important for skeletal muscle energy metabolism, regulating glucose utilization, insulin sensitivity, and muscle mass. Nicotinamide adenine dinucleotide phosphate-dependent 11β-hydroxysteroid dehydrogenase type 1 (11β-HSD1)-mediated glucocorticoid activation in the sarcoplasmic reticulum (SR) is integral to mediating the detrimental effects of glucocorticoid excess in muscle. 11β-Hydroxysteroid dehydrogenase type 1 activity requires glucose-6-phosphate transporter (G6PT)-mediated G6P transport into the SR for its metabolism by hexose-6-phosphate dehydrogenase (H6PDH) for NADPH generation. Here, we examine the G6PT/H6PDH/11β-HSD1 triad in differentiating myotubes and explore the consequences of muscle-specific knockout of 11β-HSD1 and H6PDH. 11β-Hydroxysteroid dehydrogenase type 1 expression and activity increase with myotube differentiation and in response to glucocorticoids. Hexose-6-phosphate dehydrogenase shows some elevation in expression with differentiation and in response to glucocorticoid, while G6PT appears largely unresponsive to these particular conditions. When examining 11β-HSD1 muscle-knockout mice, we were unable to detect significant decrements in activity, despite using a well-validated muscle-specific Cre transgene and confirming high-level recombination of the floxed HSD11B1 allele. We propose that the level of recombination at the HSD11B1 locus may be insufficient to negate basal 11β-HSD1 activity for a protein with a long half-life. Hexose-6-phosphate dehydrogenase was undetectable in H6PDH muscle-knockout mice, which display the myopathic phenotype seen in global KO mice, validating the importance of SR NADPH generation. We envisage these data and models finding utility when investigating the muscle-specific functions of the 11β-HSD1/G6PT/H6PDH triad.

摘要

糖皮质激素对骨骼肌能量代谢、调节葡萄糖利用、胰岛素敏感性和肌肉质量至关重要。烟酰胺腺嘌呤二核苷酸磷酸依赖性11β-羟基类固醇脱氢酶1型(11β-HSD1)介导的肌浆网(SR)中糖皮质激素激活对于介导糖皮质激素过量在肌肉中的有害作用不可或缺。11β-羟基类固醇脱氢酶1型活性需要葡萄糖-6-磷酸转运蛋白(G6PT)介导的G6P转运进入SR,以便由己糖-6-磷酸脱氢酶(H6PDH)进行代谢以生成NADPH。在此,我们研究了分化中的肌管中的G6PT/H6PDH/11β-HSD1三联体,并探讨了肌肉特异性敲除11β-HSD1和H6PDH的后果。11β-羟基类固醇脱氢酶1型的表达和活性随着肌管分化以及对糖皮质激素的反应而增加。己糖-6-磷酸脱氢酶随着分化以及对糖皮质激素的反应,其表达有一定程度的升高,而G6PT在这些特定条件下似乎基本无反应。在研究11β-HSD1肌肉敲除小鼠时,尽管使用了经过充分验证的肌肉特异性Cre转基因并确认了floxed HSD11B1等位基因的高水平重组,但我们仍无法检测到活性的显著降低。我们提出,对于半衰期较长的蛋白质,HSD11B1基因座处的重组水平可能不足以消除基础11β-HSD1活性。在H6PDH肌肉敲除小鼠中未检测到己糖-6-磷酸脱氢酶,这些小鼠表现出在全身敲除小鼠中所见的肌病表型,证实了SR中NADPH生成的重要性。我们设想,这些数据和模型在研究11β-HSD1/G6PT/H6PDH三联体的肌肉特异性功能时将具有实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3543/5601182/01d3d150fb37/CBF-35-269-g001.jpg

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