Title of article :
Differential proteomics analysis of proteins from human diabetic and age-related cataractous lenses
Author/Authors :
Zhu, Jing Department of Ophthalmology - Nanjing Medical University Affiliated Wuxi People’s Hospital - Wuxi - Jiangsu, People's Republic of China , Shao, Jun Department of Ophthalmology - Nanjing Medical University Affiliated Wuxi People’s Hospital - Wuxi - Jiangsu, People's Republic of China , Yao, Yong Department of Ophthalmology - Nanjing Medical University Affiliated Wuxi People’s Hospital - Wuxi - Jiangsu, People's Republic of China , Chu, Zhao Dong Department of Ophthalmology - Nanjing Medical University Affiliated Wuxi People’s Hospital - Wuxi - Jiangsu, People's Republic of China , Yu, Qian Qian Department of Ophthalmology - Nanjing Medical University Affiliated Wuxi People’s Hospital - Wuxi - Jiangsu, People's Republic of China , Zhao, Wei Department of Ophthalmology - Nanjing Medical University Affiliated Wuxi People’s Hospital - Wuxi - Jiangsu, People's Republic of China , Lin, Qing Department of Ophthalmology - Nanjing Medical University Affiliated Wuxi People’s Hospital - Wuxi - Jiangsu, People's Republic of China , Zhang, Zi Yin Department of Ophthalmology - Nanjing Medical University Affiliated Wuxi People’s Hospital - Wuxi - Jiangsu, People's Republic of China
Abstract :
Backgound: To investigate the differential lens proteomics between diabetic cataract, age-related cataract, and natural subjects. Materials
and Methods: Two-dimensional electrophoresis (2-DE), mass spectrometry (MS), and enzyme-linked immunosorbent assay (ELISA) were
employed. Total soluble proteins in lenses of type I diabetic cataract, age-related cataract (nondiabetic) patients, and normal control were
extracted and subjected to 2-DE. The differential protein spots were recovered, digested with trypsin, and further applied to MALDI-TOFMS.
ELISA analysis was used to determine the levels of differential proteins in lenses of three groups. Results: 2-DE analysis reflected that
lens proteins of normal control, diabetic, and age-related cataract subjects were in the section of pH 5-9 and the relative molecular weights
were 14-97 kDa, while relative molecular weight of more abundant crystallines was localized at 20-31 kDa. five differential protein spots
were detected and identified using MALDI-TOF-MS, including beta-crystallin A3, alpha-crystallin B chain, chain A of crystal structure
of truncated human beta-B1-crystallin, beta-crystallin B1, and an interesting unnamed protein product highly similar to alpha-crystallin
B chain, respectively. ELISA analysis revealed that lenses of diabetic cataract patients should contain significantly more concentrations
of beta-crystallin A3, alpha-crystallin B chain, and beta-crystallin B1 than those of age-related cataract patients and normal control.
Conclusion: This study clearly reflected the differential proteins of diabetic cataract, age-related cataract lenses compared with natural
subjects, and it is helpful for the further research on the principles and mechanisms of different types of cataract.
Keywords :
Age-related cataract , crystalline , diabetic cataract , mass spectrometry , proteomics , two dimensional electrophoresis
Journal title :
Astroparticle Physics