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恢复蛋白突变体中Ca2+ -肉豆蔻酰开关的功能恢复

Functional restoration of the Ca2+-myristoyl switch in a recoverin mutant.

作者信息

Senin Ivan I, Vaganova Svetlana A, Weiergräber Oliver H, Ergorov Nikolay S, Philippov Pavel P, Koch Karl Wilhelm

机构信息

A.N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, 119992, Moscow, Russian Federation.

出版信息

J Mol Biol. 2003 Jul 4;330(2):409-18. doi: 10.1016/s0022-2836(03)00581-3.

Abstract

Recoverin is a neuronal calcium sensor protein that plays a crucial role in vertebrate phototransduction. It undergoes a Ca(2+)-myristoyl switch when Ca(2+) binds to its two functional EF-hand motifs (EF-hands 2 and 3), each present in one of recoverin's two domains. Impairment of Ca(2+)-binding in recoverin leads to a disturbance of the Ca(2+)-myristoyl switch and loss of its regulatory properties, i.e. inhibiton of rhodopsin kinase. We have engineered recoverin mutants with either of the two functional EF-hands disabled, but with a functional Ca(2+)-binding site in EF-hand 4. While a defect in EF-hand 2 could not be rescued by the additional EF-hand 4, the impairment of EF-hand 3 was powerfully compensated by Ca(2+)-binding to EF-hand 4. For example, the myristoylated form of the latter mutant bound to membranes in a Ca(2+)-dependent way and was able to inhibit rhodopsin kinase in a way similar to that of the wild-type protein. Thus, for recoverin to undergo a Ca(2+)-myristoyl switch, it is necessary and sufficient to have either of the two EF-hands in the second domain in a functional state. On the basis of these results and inspection of published three-dimensional structures of recoverin, we propose a model highlighting the mutual interdependence of sterical configurations in EF-hands 3 and 4 of recoverin.

摘要

恢复蛋白是一种神经元钙传感蛋白,在脊椎动物光转导过程中发挥关键作用。当钙离子与其两个功能性EF手基序(EF手2和3)结合时,它会发生钙-肉豆蔻酰开关,这两个基序分别存在于恢复蛋白的两个结构域之一中。恢复蛋白中钙结合的受损会导致钙-肉豆蔻酰开关的紊乱及其调节特性的丧失,即视紫红质激酶的抑制。我们构建了两个功能性EF手之一失活但EF手4中有一个功能性钙结合位点的恢复蛋白突变体。虽然EF手2的缺陷不能通过额外的EF手4得到挽救,但EF手3的损伤通过钙离子与EF手4的结合得到了有力补偿。例如,后一种突变体的肉豆蔻酰化形式以钙依赖的方式与膜结合,并能够以与野生型蛋白类似的方式抑制视紫红质激酶。因此,对于恢复蛋白发生钙-肉豆蔻酰开关而言,第二个结构域中的两个EF手中有一个处于功能状态是必要且充分的。基于这些结果并检查已发表的恢复蛋白三维结构,我们提出了一个模型,突出了恢复蛋白EF手3和4中空间构型的相互依赖性。

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