Biswas Suman, Harris Frederick, Singh Jaipaul, Phoenix David
Department of Ophthalmology, Royal Preston Hospital, Preston, PR2 9HT, England, UK.
Mol Cell Biochem. 2004 Jun;261(1-2):151-9. doi: 10.1023/b:mcbi.0000028750.78760.6f.
Premature visual impairment due to lens opacification is a debilitating characteristic of untreated diabetes. Lens opacification is primarily due to the insolubilization of crystallins, proteins essential for lens optical properties, and recent studies have suggested that a major cause of this insolubilization may be the unregulated proteolysis of crystallins by calpains. These are intracellular cysteine proteases whose activation requires the presence of calcium (Ca2+) and elevated levels of lens Ca2+ is a condition associated with both diabetic cataractogenesis and other forms of the disorder. A number of calpains have been identified in the lens, including calpain 2, calpain 10 and two isozymes of calpain 3: Lp82 and Lp85. The use of animal hereditary cataract models have suggested that calpain 2 and/or Lp82 may be the major calpains involved in murine cataractogenesis with contributions from calpain 10 and Lp85. However, calpain 2 appears to be the major calpain involved in murine diabetic cataractogenesis and the strongest candidate of the calpains for a role in human types of cataractogenesis. Here, we present an overview of recent evidence on which these observations are based with an emphasis on the ability of calpains to proteolyse lens crystallins and calpain structural features, which appear to be involved in the Ca2+-mediated activation of these enzymes.
由于晶状体混浊导致的过早视力损害是未治疗糖尿病的一个使人衰弱的特征。晶状体混浊主要是由于晶状体蛋白的不溶性,晶状体蛋白是晶状体光学特性所必需的蛋白质,最近的研究表明,这种不溶性的一个主要原因可能是钙蛋白酶对晶状体蛋白的无节制蛋白水解。钙蛋白酶是细胞内半胱氨酸蛋白酶,其激活需要钙(Ca2+)的存在,而晶状体中Ca2+水平升高是与糖尿病性白内障形成及其他形式的病症相关的一种情况。在晶状体中已鉴定出多种钙蛋白酶,包括钙蛋白酶2、钙蛋白酶10以及钙蛋白酶3的两种同工酶:Lp82和Lp85。使用动物遗传性白内障模型表明,钙蛋白酶2和/或Lp82可能是参与小鼠白内障形成的主要钙蛋白酶,钙蛋白酶10和Lp85也有一定作用。然而,钙蛋白酶2似乎是参与小鼠糖尿病性白内障形成的主要钙蛋白酶,也是在人类白内障形成中发挥作用的最有力候选钙蛋白酶。在此,我们概述了这些观察结果所基于的最新证据,重点关注钙蛋白酶对晶状体蛋白进行蛋白水解的能力以及钙蛋白酶的结构特征,这些特征似乎与这些酶的Ca2+介导的激活有关。