Mella Manuela, Colotti Gianni, Zamparelli Carlotta, Verzili Daniela, Ilari Andrea, Chiancone Emilia
Consiglio Nazionale delle Ricerche Institute of Molecular Biology and Pathology, Department of Biochemical Sciences A. Rossi Fanelli, University of Rome La Sapienza, Italy.
J Biol Chem. 2003 Jul 4;278(27):24921-8. doi: 10.1074/jbc.M213276200. Epub 2003 Apr 23.
Sorcin is a typical penta-EF-hand protein that participates in Ca2+-regulated processes by translocating reversibly from cytosol to membranes, where it interacts with different target proteins in different tissues. Binding of two Ca2+/monomer triggers translocation, although EF1, EF2, and EF3 are potentially able to bind calcium at micromolar concentrations. To identify the functional pair, the conserved bidentate -Z glutamate in these EF-hands was mutated to yield E53Q-, E94A-, and E124A-sorcin, respectively. Limited structural perturbations occur only in E124A-sorcin due to involvement of Glu-124 in a network of interactions that comprise the long D helix connecting EF3 to EF2. The overall affinity for Ca2+ and for two sorcin targets, annexin VII and the ryanodine receptor, follows the order wild-type > E53Q- > E94A- > E124A-sorcin, indicating that disruption of EF3 has the largest functional impact and that disruption of EF2 and EF1 has progressively smaller effects. Based on this experimental evidence, EF3 and EF2, which are not paired in the canonical manner, are the functional EF-hands. Sorcin is proposed to be activated upon Ca2+ binding to EF3 and transmission of the conformational change at Glu-124 via the D helix to EF2 and from there to EF1 via the canonical structural/functional pairing. This mechanism may be applicable to all penta-EF-hand proteins.
索辛蛋白是一种典型的五聚EF手型蛋白,它通过在细胞质和细胞膜之间可逆地转运来参与钙离子调节的过程,在不同组织中与不同的靶蛋白相互作用。两个钙离子/单体的结合触发转运,尽管EF1、EF2和EF3在微摩尔浓度下都有可能结合钙离子。为了确定功能对,这些EF手中保守的双齿-Z谷氨酸分别被突变为E53Q-、E94A-和E124A-索辛蛋白。由于Glu-124参与了由连接EF3和EF2的长D螺旋组成的相互作用网络,只有E124A-索辛蛋白发生了有限的结构扰动。对钙离子以及对两个索辛蛋白靶标(膜联蛋白VII和兰尼碱受体)的总体亲和力遵循野生型>E53Q->E94A->E124A-索辛蛋白的顺序,这表明EF3的破坏具有最大的功能影响,而EF2和EF1的破坏影响逐渐减小。基于这一实验证据,未以典型方式配对的EF3和EF2是功能性EF手。有人提出,钙离子与EF3结合后,通过D螺旋将Glu-124处的构象变化传递给EF2,并从那里通过典型的结构/功能配对传递给EF1,从而激活索辛蛋白。这种机制可能适用于所有五聚EF手型蛋白。