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通过单细胞转录组分析鉴定血管平滑肌细胞中肌营养不良蛋白的新型基因调控网络。

Identification of Novel Gene Regulatory Networks for Dystrophin Protein in Vascular Smooth Muscle Cells by Single-Nuclear Transcriptome Analysis.

机构信息

Medical College of Georgia, Augusta University, Augusta, GA 30912, USA.

Department of Anatomy, Cell Biology and Physiology, School of Medicine, Indiana University, Indianapolis, IN 46202, USA.

出版信息

Cells. 2023 Mar 14;12(6):892. doi: 10.3390/cells12060892.

Abstract

Duchenne muscular dystrophy is an X-linked recessive disease caused by mutations in dystrophin proteins that lead to heart failure and respiratory failure. Dystrophin () is not only expressed in cardiomyocytes and skeletal muscle cells, but also in vascular smooth muscle cells (VSMCs). Patients with DMD have been reported to have hypotension. Single nuclear RNA sequencing (snRNA-seq) is a state-of-the-art technology capable of identifying niche-specific gene programs of tissue-specific cell subpopulations. To determine whether mutation alters blood pressure, we compared systolic, diastolic, and mean blood pressure levels in mdx mice (a mouse model of DMD carrying a nonsense mutation in gene) and the wide-type control mice. We found that mdx mice showed significantly lower systolic, diastolic, and mean blood pressure than control mice. To understand how mutation changes gene expression profiles from VSMCs, we analyzed an snRNA-seq dataset from the muscle nucleus of mutant () mice and control (Ctrl) mice. Gene Ontology (GO) enrichment analysis revealed that the most significantly activated pathways in -VSMCs are involved in ion channel function (potassium channel activity, cation channel complex, and cation channel activity). Notably, we discovered that the -VSMCs showed significantly upregulated expression of KCNQ5 and RYR2, whereas the most suppressed pathways were transmembrane transporter activity (such as anion transmembrane transporter activity, inorganic anion transmembrane transporter activity, import into cell, and import across plasma membrane). Moreover, we analyzed metabolic pathways from the Kyoto Encyclopedia of Genes and Genomes (KEGG) using "scMetabolism" R package. -VSMCs exhibited dysregulation of pyruvate metabolism and nuclear acid metabolism. In conclusion, via the application of snRNA-seq, we (for the first time) identify the potential molecular regulation by in the upregulation of the expression of KCNQ5 genes in VSMCs, which helps us to understand the mechanism of hypotension in DMD patients. Our study potentially offers new possibilities for therapeutic interventions in systemic hypotension in DMD patients with pharmacological inhibition of KCNQ5.

摘要

杜氏肌营养不良症是一种 X 连锁隐性疾病,由肌营养不良蛋白基因突变引起,可导致心力衰竭和呼吸衰竭。肌营养不良蛋白()不仅在心肌细胞和骨骼肌细胞中表达,也在血管平滑肌细胞(VSMCs)中表达。据报道,DMD 患者存在低血压。单细胞 RNA 测序(snRNA-seq)是一种最先进的技术,能够识别组织特异性细胞亚群的特定龛位基因程序。为了确定是否突变改变了血压,我们比较了 mdx 小鼠(携带基因无义突变的 DMD 小鼠模型)和野生型对照小鼠的收缩压、舒张压和平均血压水平。我们发现 mdx 小鼠的收缩压、舒张压和平均血压均显著低于对照组。为了了解突变如何改变 VSMCs 的基因表达谱,我们分析了来自 突变()小鼠和对照(Ctrl)小鼠肌肉核的 snRNA-seq 数据集。基因本体论(GO)富集分析显示,-VSMCs 中最显著激活的途径与离子通道功能(钾通道活性、阳离子通道复合物和阳离子通道活性)有关。值得注意的是,我们发现 -VSMCs 中 KCNQ5 和 RYR2 的表达显著上调,而受抑制最明显的途径是跨膜转运体活性(如阴离子跨膜转运体活性、无机阴离子跨膜转运体活性、进入细胞的导入和穿过质膜的导入)。此外,我们使用“scMetabolism”R 包分析了京都基因与基因组百科全书(KEGG)中的代谢途径。-VSMCs 表现出丙酮酸代谢和核碱基代谢的失调。总之,通过 snRNA-seq 的应用,我们(首次)确定了在 VSMCs 中 KCNQ5 基因表达上调的潜在分子调控机制,这有助于我们理解 DMD 患者低血压的机制。我们的研究为 DMD 患者的系统低血压的治疗干预提供了新的可能性,通过药理学抑制 KCNQ5 来实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5627/10047041/b45e64b81736/cells-12-00892-g001.jpg

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