TY - JOUR
T1 - Proteomic analysis of serum biomarkers for prediabetes using the Long-Evans Agouti rat, a spontaneous animal model of type 2 diabetes mellitus
AU - Takahashi, Eri
AU - Unoki-Kubota, Hiroyuki
AU - Shimizu, Yukiko
AU - Okamura, Tadashi
AU - Iwata, Wakiko
AU - Kajio, Hiroshi
AU - Yamamoto-Honda, Ritsuko
AU - Shiga, Tomoko
AU - Yamashita, Shigeo
AU - Tobe, Kazuyuki
AU - Okumura, Akinori
AU - Matsumoto, Michihiro
AU - Yasuda, Kazuki
AU - Noda, Mitsuhiko
AU - Kaburagi, Yasushi
N1 - Publisher Copyright:
© 2017 The Authors. Journal of Diabetes Investigation published by Asian Association for the Study of Diabetes (AASD) and John Wiley & Sons Australia, Ltd
PY - 2017/9
Y1 - 2017/9
N2 - Aims/Introduction: To identify candidate serum molecules associated with the progression of type 2 diabetes mellitus, differential serum proteomic analysis was carried out on a spontaneous animal model of type 2 diabetes mellitus without obesity, the Long-Evans Agouti (LEA) rat. Materials and Methods: We carried out quantitative proteomic analysis using serum samples from 8- and 16-week-old LEA and control Brown Norway (BN) rats (n = 4/group). Differentially expressed proteins were validated by multiple reaction monitoring analysis using the sera collected from 8-, 16-, and 24-week-old LEA (n = 4/each group) and BN rats (n = 5/each group). Among the validated proteins, we also examined the possible relevance of the human homolog of serine protease inhibitor A3 (SERPINA3) to type 2 diabetes mellitus. Results: The use of 2-D fluorescence difference gel electrophoresis analysis and the following liquid chromatography-multiple reaction monitoring analysis showed that the serum levels of five proteins were differentially changed between LEA rats and BN rats at all three time-points examined. Among the five proteins, SERPINA3N was increased significantly in the sera of LEA rats compared with age-matched BN rats. The serum level of SERPINA3 was also found to be significantly higher in type 2 diabetes mellitus patients than in healthy control participants. Furthermore, glycated hemoglobin, fasting insulin and estimated glomerular filtration rate were independently associated with the SERPINA3 levels. Conclusions: These findings suggest a possible role for SERPINA3 in the development of the early stages of type 2 diabetes mellitus, although further replication studies and functional investigations regarding their role are required.
AB - Aims/Introduction: To identify candidate serum molecules associated with the progression of type 2 diabetes mellitus, differential serum proteomic analysis was carried out on a spontaneous animal model of type 2 diabetes mellitus without obesity, the Long-Evans Agouti (LEA) rat. Materials and Methods: We carried out quantitative proteomic analysis using serum samples from 8- and 16-week-old LEA and control Brown Norway (BN) rats (n = 4/group). Differentially expressed proteins were validated by multiple reaction monitoring analysis using the sera collected from 8-, 16-, and 24-week-old LEA (n = 4/each group) and BN rats (n = 5/each group). Among the validated proteins, we also examined the possible relevance of the human homolog of serine protease inhibitor A3 (SERPINA3) to type 2 diabetes mellitus. Results: The use of 2-D fluorescence difference gel electrophoresis analysis and the following liquid chromatography-multiple reaction monitoring analysis showed that the serum levels of five proteins were differentially changed between LEA rats and BN rats at all three time-points examined. Among the five proteins, SERPINA3N was increased significantly in the sera of LEA rats compared with age-matched BN rats. The serum level of SERPINA3 was also found to be significantly higher in type 2 diabetes mellitus patients than in healthy control participants. Furthermore, glycated hemoglobin, fasting insulin and estimated glomerular filtration rate were independently associated with the SERPINA3 levels. Conclusions: These findings suggest a possible role for SERPINA3 in the development of the early stages of type 2 diabetes mellitus, although further replication studies and functional investigations regarding their role are required.
KW - Long-Evans Agouti rat
KW - Quantitative serum proteomics
KW - Serine protease inhibitor A3
UR - http://www.scopus.com/inward/record.url?scp=85016396921&partnerID=8YFLogxK
U2 - 10.1111/jdi.12638
DO - 10.1111/jdi.12638
M3 - 学術論文
C2 - 28150914
AN - SCOPUS:85016396921
SN - 2040-1116
VL - 8
SP - 661
EP - 671
JO - Journal of Diabetes Investigation
JF - Journal of Diabetes Investigation
IS - 5
ER -