机构:[1]Department of Orthopedic Surgery, the First People’s Hospital of Yunnan Province, the Affiliated Hospital of Kunming University of Science and Technology, the Key Laboratory of Digital Orthopaedics of Yunnan Provincial, Kunming, Yunnan, China外科片骨科云南省第一人民医院[2]InnoVec Biotherapeutics Co., Ltd, Beijing, China[3]the First Department of Hepatic Diseases, the Third People’s Hospital of Kunming City, Kunming, Yunnan, China[4]Graduate School of Kunming Medical University, Kunming, Yunnan, China[5]Yunnan Key Laboratory of Stem Cell and Regenerative Medicine, Science and Technology Achievement Incubation Center, Kunming Medical University, Kunming, Yunnan, China[6]Department of Spinal Surgery, the First Affiliated Hospital of Dali University (School of Clinical Medicine), Dali, Yunnan, China
Background Sarcopenia is defined as an age-related progressive loss of muscle mass and/or strength. Although different factors can contribute to this disease, the underlying mechanisms remain unclear. We assessed transcriptional heterogeneity in skeletal muscles from sarcopenic and control mice at single-cell resolution. Methods A mouse model was established to study sarcopenic skeletal muscles. Single-cell RNA-seq was performed on tibialis anterior (TA) muscle cells collected from sarcopenic and control mice. A series of bioinformatic analyses were carried out to identify and compare different cell types under different conditions. Immunofluorescence staining and western blotting were used to validate the findings from single-cell experiments. Tube formation assays were conducted to further evaluate the effects of Gbp2 on endothelial cells during angiogenesis. Results A murine sarcopenia model was successfully established using a senescence-accelerated mouse strain (SAMP6, n = 5). Sarcopenia phenotype was induced by administration of dexamethasone (20 mg/kg) and reduced physical activity. Senescence-resistant mice strain (SAMR1) and SAMP6 strain with similar activity but injected with PBS were recruited as two control groups. As signs of sarcopenia, body weight, muscle cell counts and cross-sectional fibre area were all significantly decreased in sarcopenic mice (P value = 0.004, 0.03 and 0.035, respectively). After quality control, 13 612 TA muscle single-cell transcriptomes were retained for analysis. Fourteen cell clusters were identified from the profiled cells. Among them, two distinct endothelial subtypes were found to be dominant in the sarcopenia group (42.2% cells) and in the two control groups (59.1% and 47.9% cells), respectively. 191 differentially expressed genes were detected between the two endothelial subtypes. Sarcopenia-specific endothelial cell subtype exhibited a dramatic increase in the interferon family genes and the interferon-inducible guanylate-binding protein (GBP) family gene expressions. For example, Igtp and Gbp2 in sarcopenic endothelial cells were 5.4 and 13.3 times higher than those in the control groups, respectively. We further validated our findings in muscle specimens of sarcopenia patients and observed that GBP2 levels were increased in endothelial cells of a subset of patients (11 of 40 patients, 27.5%), and we identified significantly higher CD31 and GBP2 co-localization (P value = 0.001128). Finally, we overexpressed Gbp2 in human umbilical vein endothelial cells in vitro. The endothelial cells with elevated Gbp2 expression displayed compromised tube formation. Conclusions Our single-cell-based results suggested that endothelial cells may play critical roles in sarcopenia development through interferon-GBP signalling pathways, highlighting new therapeutic directions to slow down or even reverse age-related sarcopenia.
基金:
National Natural Science Foundation of China [81960268, 31960136]; Joint special fund of Applied Fundamental Research of Kunming Medical University; Science and Technology Office of Yunnan [202001AY070001-172, 2018FE001]; Joint Project of Yunnan Provincial Science and Technology Department-Local Universities [2018FH001-084, 2019FH001-015]
语种:
外文
被引次数:
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PubmedID:
中科院(CAS)分区:
出版当年[2022]版:
大类|1 区医学
小类|1 区老年医学1 区医学:内科
最新[2023]版:
大类|1 区医学
小类|1 区老年医学1 区医学:内科
JCR分区:
出版当年[2021]版:
Q1GERIATRICS & GERONTOLOGYQ1MEDICINE, GENERAL & INTERNAL
最新[2023]版:
Q1MEDICINE, GENERAL & INTERNALQ1GERIATRICS & GERONTOLOGY
第一作者机构:[1]Department of Orthopedic Surgery, the First People’s Hospital of Yunnan Province, the Affiliated Hospital of Kunming University of Science and Technology, the Key Laboratory of Digital Orthopaedics of Yunnan Provincial, Kunming, Yunnan, China
共同第一作者:
通讯作者:
通讯机构:[1]Department of Orthopedic Surgery, the First People’s Hospital of Yunnan Province, the Affiliated Hospital of Kunming University of Science and Technology, the Key Laboratory of Digital Orthopaedics of Yunnan Provincial, Kunming, Yunnan, China[*1]Department of Orthopedic Surgery, the First People’s Hospital of Yunnan Province, the Affiliated Hospital of Kunming University of Science and Technology, the Key Laboratory of Digital Orthopaedics of Yunnan Provincial, 157 Jinbi Road, Kunming, Yunnan 650032, China
推荐引用方式(GB/T 7714):
Peng Zhi,Zhang Ruoyu,Kuang Xiaolin,et al.Single-cell RNA-seq reveals interferon-induced guanylate-binding proteins are linked with sarcopenia[J].JOURNAL OF CACHEXIA SARCOPENIA AND MUSCLE.2022,13(6):2985-2998.doi:10.1002/jcsm.13091.
APA:
Peng, Zhi,Zhang, Ruoyu,Kuang, Xiaolin,Yu, Chen,Niu, Shiwei...&Lu, Sheng.(2022).Single-cell RNA-seq reveals interferon-induced guanylate-binding proteins are linked with sarcopenia.JOURNAL OF CACHEXIA SARCOPENIA AND MUSCLE,13,(6)
MLA:
Peng, Zhi,et al."Single-cell RNA-seq reveals interferon-induced guanylate-binding proteins are linked with sarcopenia".JOURNAL OF CACHEXIA SARCOPENIA AND MUSCLE 13..6(2022):2985-2998