Kursula Petri
Faculty of Biochemistry and Molecular Medicine & Biocenter Oulu, University of Oulu, Oulu, Finland,
Amino Acids. 2014 Oct;46(10):2295-304. doi: 10.1007/s00726-014-1795-y. Epub 2014 Jul 9.
Calmodulin (CaM) is a highly conserved protein and a crucial calcium sensor in eukaryotes. CaM is a regulator of hundreds of diverse target proteins. A wealth of studies has been carried out on the structure of CaM, both in the unliganded form and in complexes with target proteins and peptides. The outcome of these studies points toward a high propensity to attain various conformational states, depending on the binding partner. The purpose of this review is to provide examples of different conformations of CaM trapped in the crystal state. In addition, comparisons are made to corresponding studies in solution. The different CaM conformations in crystal structures are also compared based on the positions of the metal ions bound to their EF hands, in terms of distances, angles, and pseudo-torsion angles. Possible caveats and artifacts in CaM crystal structures are discussed, as well as the possibilities of trapping biologically relevant CaM conformations in the crystal state.
钙调蛋白(CaM)是一种高度保守的蛋白质,也是真核生物中至关重要的钙传感器。CaM是数百种不同靶蛋白的调节剂。针对CaM的结构,已经开展了大量研究,涉及无配体形式以及与靶蛋白和肽形成的复合物。这些研究结果表明,根据结合伴侣的不同,CaM极易呈现出各种构象状态。本综述的目的是提供被困于晶体状态的CaM不同构象的实例。此外,还将与溶液中的相应研究进行比较。基于与CaM的EF手型基序结合的金属离子的位置,从距离、角度和伪扭转角方面,对晶体结构中不同的CaM构象进行比较。讨论了CaM晶体结构中可能存在的问题和假象,以及在晶体状态下捕获生物学相关CaM构象的可能性。