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hedgehog 相互作用蛋白(HHIP)抑制 COPD 衍生气道平滑肌细胞中的气道重塑和代谢重编程。

Hedgehog interacting protein (HHIP) represses airway remodeling and metabolic reprogramming in COPD-derived airway smooth muscle cells.

机构信息

School of Medicine, Cheeloo College of Medicine, Shandong University, Jinan, 250012, Shandong Province, China.

Channing Division of Network Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, 02115, USA.

出版信息

Sci Rep. 2021 Apr 27;11(1):9074. doi: 10.1038/s41598-021-88434-x.

Abstract

Although HHIP locus has been consistently associated with the susceptibility to COPD including airway remodeling and emphysema in genome-wide association studies, the molecular mechanism underlying this genetic association remains incompletely understood. By utilizing Hhip mice and primary human airway smooth muscle cells (ASMCs), here we aim to determine whether HHIP haploinsufficiency increases airway smooth muscle mass by reprogramming glucose metabolism, thus contributing to airway remodeling in COPD pathogenesis. The mRNA levels of HHIP were compared in normal and COPD-derived ASMCs. Mitochondrial oxygen consumption rate and lactate levels in the medium were measured in COPD-derived ASMCs with or without HHIP overexpression as readouts of glucose oxidative phosphorylation and aerobic glycolysis rates. The proliferation rate was measured in healthy and COPD-derived ASMCs treated with or without 2-DG. Smooth muscle mass around airways was measured by immunofluorescence staining for α-smooth muscle actin (α-SMA) in lung sections from Hhip mice and their wild type littermates, Hhip mice. Airway remodeling was assessed in Hhip and Hhip mice exposed to 6 months of cigarette smoke. Our results show HHIP inhibited aerobic glycolysis and represses cell proliferation in COPD-derived ASMCs. Notably, knockdown of HHIP in normal ASMCs increased PKM2 activity. Importantly, Hhip mice demonstrated increased airway remodeling and increased intensity of α-SMA staining around airways compared to Hhip mice. In conclusion, our findings suggest that HHIP represses aerobic glycolysis and ASMCs hyperplasia, which may contribute to the increased airway remodeling in Hhip mice.

摘要

尽管 HHIP 基因座在全基因组关联研究中一直与 COPD 的易感性相关,包括气道重塑和肺气肿,但这种遗传关联的分子机制仍不完全清楚。利用 Hhip 小鼠和原代人气道平滑肌细胞(ASMCs),我们旨在确定 HHIP 杂合不足是否通过重新编程葡萄糖代谢来增加气道平滑肌质量,从而导致 COPD 发病机制中的气道重塑。比较了正常和 COPD 来源的 ASMCs 中的 HHIP mRNA 水平。以 COPD 来源的 ASMCs 中的线粒体耗氧率和培养基中的乳酸水平作为葡萄糖氧化磷酸化和有氧糖酵解率的读数,测量有无 HHIP 过表达时的这些指标。用 2-DG 处理健康和 COPD 来源的 ASMCs,测量增殖率。通过肺切片中 α-平滑肌肌动蛋白(α-SMA)的免疫荧光染色测量 Hhip 小鼠及其野生型同窝仔鼠、Hhip 小鼠气道周围的平滑肌质量。将 Hhip 和 Hhip 小鼠暴露于 6 个月的香烟烟雾中,评估气道重塑。我们的结果表明,HHIP 抑制 COPD 来源的 ASMCs 中的有氧糖酵解并抑制细胞增殖。值得注意的是,在正常 ASMCs 中敲低 HHIP 增加了 PKM2 活性。重要的是,与 Hhip 小鼠相比,Hhip 小鼠表现出增加的气道重塑和气道周围 α-SMA 染色强度增加。总之,我们的研究结果表明,HHIP 抑制有氧糖酵解和 ASMCs 增生,这可能导致 Hhip 小鼠气道重塑增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5544/8079715/32060494221d/41598_2021_88434_Fig1_HTML.jpg

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