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Subproteomic profiling from renal cortices in OLETF rats reveals mutations of multiple novel genes in diabetic nephropathy

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单位: [1]Department of School of Public Health, InternationalScience and Technology Cooperation Base of GeriatricMedicine, The Hebei Key Lab for Organ Fibrosis, TheHebei Key Lab for chronic disease, North China Universityof Science and Technology, Tangshan 063000, China [2]Beijing Key Lab for Immune-Mediated InfammatoryDiseases, Institute of Clinical Medical Science, China-JapanFriendship Hospital, 2 Yinghua East Road, ChaoyangDistrict, Beijing 100029, People’s Republic of China [3]Department of Modern Technology and Education,North China University of Science and Technology,Tangshan 063000, China [4]Department of Endocrinology, Kailuan General Hospital,North China University of Science and Technology,Tangshan 063000, China [5]School of Graduate Studies, North China Universityof Science and Technology, Tangshan 063000, China
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关键词: Diabetic nephropathy Proteomics Two-dimensional difference gel electrophoresis Gene mutation OLETF rat

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Background Diabetic nephropathy (DN) is a serious threat to human health, but its pathogenesis is not fully understood. Otsuka Long-Evans Tokushima Fatty (OLETF) rats are very similar to human DN in many aspects such as pathological changes and processes, and are deemed to be an ideal rodent model. Objective This study was aimed to explore the pathogenesis of DN by analyzing the protein expression profile from renal cortices in OLETF rats. Methods Thirty-six-week-old diabetic OLETF rats and normal control Long-Evans Tokushima Otsuka (LETO) rats were nephrectomized, and the renal cortices were isolated. The proteins were separated by soluble and insoluble high-resolution subproteomics methods for the analysis and identification of differential proteins. Results Thirty-six differentially expressed proteins were found. Among them, 11 proteins had different isoelectric points and molecular weights between OLETF and LETO rats. Further sequencing identified point mutations in genes encoding eight of these proteins, which are involved in many biological processes closely related to DN, including oxidative stress and inflammation. Five of these eight proteins have not been reported in DN. Conclusion This study reveals mutations of multiple novel genes in diabetic OLETF rats, providing some new potential targets for the pathogenesis of DN and helping to better understand the pathogenesis of DN.

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出版当年[2021]版:
大类 | 4 区 生物学
小类 | 4 区 生化与分子生物学 4 区 生物工程与应用微生物 4 区 遗传学
最新[2025]版:
大类 | 4 区 生物学
小类 | 4 区 生化与分子生物学 4 区 生物工程与应用微生物 4 区 遗传学
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出版当年[2020]版:
Q4 GENETICS & HEREDITY Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
最新[2023]版:
Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Q4 GENETICS & HEREDITY

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第一作者单位: [1]Department of School of Public Health, InternationalScience and Technology Cooperation Base of GeriatricMedicine, The Hebei Key Lab for Organ Fibrosis, TheHebei Key Lab for chronic disease, North China Universityof Science and Technology, Tangshan 063000, China
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