Reverter David, Braun Marianne, Fernandez-Catalan Carlos, Strobl Stefan, Sorimachi Hiroyuki, Bode Wolfram
Max-Planck-Institute of Biochemistry, Planegg-Martinsried, Germany.
Biol Chem. 2002 Sep;383(9):1415-22. doi: 10.1515/BC.2002.160.
The calpains form a growing family of structurally related intracellular multidomain cysteine proteinases containing a papain-related catalytic domain, whose activity depends on calcium. The calpains are believed to play important roles in cytoskelatel remodeling processes, cell differentiation, apoptosis and signal transduction, but are also implicated in a number of diseases. Recent crystal structures of truncated rat and full-length human apo-m-calpain revealed the domain arrangement and explained the inactivity of m-calpain in the absence of calcium by a disrupted catalytic domain. Proteolysis studies have indicated several susceptible sites, in particular in the catalytic subdomain IIb and in the following domain III, which are more accessible to attacking proteinases in the presence than in the absence of calcium. The current view is that m-calpain exhibits a number of calcium binding sites, which upon calcium binding cooperatively interact, triggering the reformation of a papain-like catalytic domain, accompanied by enhanced mobilisation of the whole structure. To further analyse the flexibility of m-calpain, we have determined and refined the human full-length apo-m-calpain structure of a second crystal form to 3.15 A resolution. Here we present this new structure, compare it with our first structure now re-refined with tighter constrain parameters, discuss the flexibility in context with the proteolysis and calcium binding data available, and suggest implications for the calcium-induced activation process.
钙蛋白酶构成了一个不断扩大的家族,这些细胞内多结构域半胱氨酸蛋白酶在结构上相关,含有一个与木瓜蛋白酶相关的催化结构域,其活性依赖于钙。钙蛋白酶被认为在细胞骨架重塑过程、细胞分化、细胞凋亡和信号转导中发挥重要作用,但也与多种疾病有关。最近截短的大鼠和全长人脱钙 m-钙蛋白酶的晶体结构揭示了结构域排列,并通过催化结构域的破坏解释了 m-钙蛋白酶在无钙情况下的无活性。蛋白水解研究表明了几个敏感位点,特别是在催化亚结构域 IIb 和随后的结构域 III 中,与无钙时相比,在有钙存在时这些位点更容易被攻击蛋白酶所接近。目前的观点是,m-钙蛋白酶表现出多个钙结合位点,钙结合后这些位点协同相互作用,触发类木瓜蛋白酶催化结构域的重新形成,同时伴随着整个结构的增强移动。为了进一步分析 m-钙蛋白酶的灵活性,我们已经将第二种晶体形式的人全长脱钙 m-钙蛋白酶结构确定并精修到 3.15 Å 的分辨率。在此我们展示这个新结构,将其与我们现在用更严格约束参数重新精修的第一个结构进行比较,结合现有的蛋白水解和钙结合数据讨论灵活性,并提出对钙诱导激活过程的影响。