机构:[a]Beijing An Zhen Hospital, Capital Medical University, Key Laboratory of Upper Airway Dysfunction-related Cardiovascular Diseases, Beijing Institute of Heart Lung and Blood Vessel Disease, Beijing, China首都医科大学附属安贞医院[b]MOE Key Laboratory of Bioinformatics, School of Life Sciences, Tsinghua University, Beijing, China[c]Department of Otolaryngology-Head and Neck Surgery, Beijing An Zhen Hospital, Capital Medical University, China临床科室耳鼻咽喉头颈外科首都医科大学附属安贞医院[d]Department of Sleep Medical Center, Beijing An Zhen Hospital, Capital Medical University, China首都医科大学附属安贞医院[e]Department of Emergency, Beijing An Zhen Hospital, Capital Medical University, China临床科室急诊危重症中心首都医科大学附属安贞医院[f]Department of Physiology, University of Hong Kong, Pokfulam, Hong Kong, China[g]Research Centre of Heart, Brain, Hormone and Healthy Aging, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Pokfulam, Hong Kong, China[h]Shenzhen Research Institute, Institute of Vascular Medicine, Li Ka Shing Institute of Health Sciences, Chinese University of Hong Kong, Hong Kong, China[i]Department of Emergency Medicine, Thomas Jefferson University, Philadelphia, PA, USA
Objective: Obstructive sleep apnea hypopnea syndrome (OSAHS) is an independent risk factor for many clinical complications. However, how OSAHS cause multiple organ injury and initiate inter-organ communication remains unclear. Moreover, despite it is well-recognized that chronic intermittent hypoxia (CIH) is a main feature of OSAHS, specific contribution of CIH to overall OSAHS-initiated pathological complications remains unclear. This study aimed to use an unbiased proteomic approach to determine whether OSAHS alters protein profiles of serum extracellular microvesicles (SEMVs) and how CIH contributes to such alterations. Methods: Tandem mass tag (TMT)-labeled quantitative proteomics assay was used to compare the differentially expressed proteins (DEPs) in SEMVs of OSAHS patients and non-OSAHS subjects. To evaluate the contribution of CIH to OSAHS, CIH rodent model was constructed and the same comparative proteomics study was performed in SEMVs from CIH and normoxia rats. The similarity and disparity of DEPs and DEPs-related functions predicted by bioinformatics tools were compared in above-mentioned two models, and several DEPs were selected and further verified by ELISA or Western blotting. Results: TMT-labeled quantitative proteomics assay unravels 32 DEPs in OSAHS patient SEMVs from a total of 560 human SEMV proteins identified. Four DEPs, namely C-reactive protein (CRP), Haptoglobin (HP),Fibronectin (FN1) and Platelet factor 4 (PF4), were further verified by ELISA and three of them (CRP, FN1 and Hp) showed significant difference in expression level between OSAHS and non-OSAHS groups. In SEMVs of rat CIH model, 121 DEPs out of 723 proteins were identified. By comparing the DEPs identified from the two models. 3 proteins (CRP and FN1 and F13a1) were found identical with the same alteration pattern (CRP was upregulated, FN1 and Fl3a1 were downregulated) in SEMVs from OSAHS patients and CIH rats, which were further verified by Western blotting. Computational functional analysis further revealed the common and distinct DEP-involved pathways under OSAHS or CIH status. Conclusions: This study provides the first evidence that OSAHS causes significant alteration in SEMV protein composition, which may contribute to OSAHS-triggered multiple organ injury and organ-to-organ communication. Moreover, we have demonstrated that CIH is the primary contributor for increased inflammatory protein expression in SEMV. As CRP is being increasingly recognized not only as a marker but also a mediator of inflammatory response to tissue injury, increased SEMV CRP in CIH/OSAHS may play an important role in OSAHSinduced tissue injury, suggesting SEMV CRP might be a therapeutic target against OSAHS-related complications. (C) 2018 Elsevier Inc. All rights reserved.
基金:
National Natural Science Foundation of ChinaNational Natural Science Foundation of China [81471082, 31741064, 81470567]; Beijing Key Laboratory of Upper Airway Dysfunction Related Cardiovascular Diseases [BZ0377]; Beijing Municipal Administration of Hospitals Clinical Medicine Development of Special Funding Support [ZYLX201605]; International Science & Technology Cooperation Program of China [2015DFA30160]; Beijing Municipal Science & Technology CommissionBeijing Municipal Science & Technology Commission [Z141100006014057]; Beijing Medical Project [2016-4]
第一作者机构:[a]Beijing An Zhen Hospital, Capital Medical University, Key Laboratory of Upper Airway Dysfunction-related Cardiovascular Diseases, Beijing Institute of Heart Lung and Blood Vessel Disease, Beijing, China
共同第一作者:
通讯作者:
通讯机构:[a]Beijing An Zhen Hospital, Capital Medical University, Key Laboratory of Upper Airway Dysfunction-related Cardiovascular Diseases, Beijing Institute of Heart Lung and Blood Vessel Disease, Beijing, China[c]Department of Otolaryngology-Head and Neck Surgery, Beijing An Zhen Hospital, Capital Medical University, China[i]Department of Emergency Medicine, Thomas Jefferson University, Philadelphia, PA, USA[*1]1025Walnut Street Suite 808, Philadelphia, PA 19107, USA[*2]No. 2 Anzhen Road, Beijing An Zhen Hospital, Beijing 100029, China.
推荐引用方式(GB/T 7714):
Huina Zhang,Fan Yang,Yichen Guo,et al.The contribution of chronic intermittent hypoxia to OSAHS: From the perspective of serum extracellular microvesicle proteins[J].METABOLISM-CLINICAL AND EXPERIMENTAL.2018,85:97-108.doi:10.1016/j.metabol.2018.02.012.
APA:
Huina Zhang,Fan Yang,Yichen Guo,Li Wang,Fang Fang...&Yongxiang Wei.(2018).The contribution of chronic intermittent hypoxia to OSAHS: From the perspective of serum extracellular microvesicle proteins.METABOLISM-CLINICAL AND EXPERIMENTAL,85,
MLA:
Huina Zhang,et al."The contribution of chronic intermittent hypoxia to OSAHS: From the perspective of serum extracellular microvesicle proteins".METABOLISM-CLINICAL AND EXPERIMENTAL 85.(2018):97-108