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灰松鼠与人晶状体蛋白的比较研究。

Comparative study of lens proteins of gray squirrel and human.

作者信息

Zigman S, Paxhia T, Lou M, Yu N T

机构信息

Ophthalmic Biochemistry Laboratory, University of Rochester School of Medicine and Dentistry, NY 14642.

出版信息

Comp Biochem Physiol B. 1990;96(4):697-704. doi: 10.1016/0305-0491(90)90216-g.

DOI:10.1016/0305-0491(90)90216-g
PMID:2225772
Abstract
  1. The four crystallins of the gray squirrel lens have been characterized using gel filtration chromatography, polyacrylamide gel electrophoresis, and immunoblotting. Alpha, beta-heavy, beta-light, and gamma crystallins of squirrel lenses have been identified immunologically, and they cross-react strongly with rabbit polyclonal antibodies. The gamma-24 crystallin of the squirrel lens also reacts strongly with monoclonal anti-human lens gamma-24, as shown by its inhibition of the ELISA reaction by 85%. 2. The water-insoluble urea soluble proteins represent non-covalently associated species of soluble crystallins and the lens cytoskeletal proteins. The membrane intrinsic protein in the urea insoluble pellet has a mol. wt of 27,000 but other lower and higher mol. wt components are also present, which were removed by washing with 0.1 NaOH. The N-terminal 30 amino acid of squirrel lens gamma crystallin was found to be identical to that of the bovine (and human) lens. 3. Measurements of the distribution and state of SH and SS compounds in the squirrel lens have shown greater similarities to those of primates than those of rodents. The findings show that on the basis of both protein and sulfur chemistry the squirrel lens is a representative model for studies of oxidative lens changes in diurnal animals, including man.
摘要
  1. 利用凝胶过滤色谱法、聚丙烯酰胺凝胶电泳法和免疫印迹法对灰松鼠晶状体的四种晶状体蛋白进行了表征。松鼠晶状体的α、β重链、β轻链和γ晶状体蛋白已通过免疫学方法鉴定,它们与兔多克隆抗体发生强烈交叉反应。松鼠晶状体的γ-24晶状体蛋白也与单克隆抗人晶状体γ-24发生强烈反应,如通过其对ELISA反应的85%抑制率所示。2. 水不溶性尿素可溶性蛋白代表可溶性晶状体蛋白和晶状体细胞骨架蛋白的非共价结合物种。尿素不溶性沉淀中的膜内在蛋白分子量为27,000,但也存在其他较低和较高分子量的成分,通过用0.1 NaOH洗涤可将其去除。发现松鼠晶状体γ晶状体蛋白的N端30个氨基酸与牛(和人)晶状体的相同。3. 对松鼠晶状体中SH和SS化合物的分布和状态的测量表明,与灵长类动物的相似性大于与啮齿动物的相似性。研究结果表明,基于蛋白质和硫化学,松鼠晶状体是研究包括人类在内的昼行性动物晶状体氧化变化的代表性模型。

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