Kumar Shivesh, Padhan Narendra, Alam Neelima, Gourinath S
School of Life Sciences, Jawaharlal Nehru University, New Delhi 110067, India.
Proteins. 2007 Sep 1;68(4):990-8. doi: 10.1002/prot.21455.
Calcium plays a pivotal role in the pathogenesis of amoebiasis, a major disease caused by Entamoeba histolytica. Several EF-hand containing calcium-binding proteins (CaBPs) have been identified from E. histolytica. Even though these proteins have very high sequence similarity, they bind to different target proteins in a Ca2+ dependent manner, leading to different functional pathways (Yadava et al., Mol Biochem Parasito 1997;84:69-82; Chakrabarty et al., J Biol Chem 2004;279:12898-12908) The crystal structure of the Entamoeba histolytica calcium binding protein-1 (EhCaBP1) has been determined at 2.4 A resolution. The crystals were grown using MPD as precipitant and they belong to P6(3) space group with unit cell parameters of a = 95.25 A, b = 95.25 A, c = 64.99 A. Only two out of the four expected EF hand motifs could be modeled into the electron density map and the final model refined to R factor of 25.6% and Free_R of 28%. Unlike CaM, the first two EF hand motifs in EhCaBP1 are connected by a long helix and form a dumbbell shaped structure. Owing to domain swapping oligomerization three EhCaBP1 molecules interact in a head to tail manner to form a triangular trimer. This arrangement allows the EF-hand motif of one molecule to interact with that of an adjacent molecule to form a two EF-hand domain similar to that seen in the N-terminal domain of the NMR structure of CaBP1, calmodulin and troponin C. The oligomeric state of EhCaBP1 results in reduced flexibility between domains and may be responsible for the more limited set of targets recognized by EhCaBP1.
钙在阿米巴病的发病机制中起着关键作用,阿米巴病是由溶组织内阿米巴引起的一种主要疾病。从溶组织内阿米巴中已鉴定出几种含有EF手型结构的钙结合蛋白(CaBP)。尽管这些蛋白质具有非常高的序列相似性,但它们以Ca2+依赖的方式与不同的靶蛋白结合,导致不同的功能途径(Yadava等人,《分子生物化学寄生虫学》1997年;84:69 - 82;Chakrabarty等人,《生物化学杂志》2004年;279:12898 - 12908)。溶组织内阿米巴钙结合蛋白-1(EhCaBP1)的晶体结构已在2.4埃分辨率下确定。晶体使用MPD作为沉淀剂生长,它们属于P6(3)空间群,晶胞参数为a = 95.25埃,b = 95.25埃,c = 64.99埃。在四个预期的EF手型基序中,只有两个可以构建到电子密度图中,最终模型的R因子精修至25.6%,自由R因子为28%。与钙调蛋白不同,EhCaBP1中的前两个EF手型基序由一个长螺旋连接,形成哑铃状结构。由于结构域交换寡聚化,三个EhCaBP1分子以头对尾的方式相互作用形成一个三角形三聚体。这种排列使得一个分子的EF手型基序能够与相邻分子的EF手型基序相互作用,形成一个类似于在CaBP1、钙调蛋白和肌钙蛋白C的NMR结构的N端结构域中看到的双EF手型结构域。EhCaBP1的寡聚状态导致结构域之间的灵活性降低,这可能是EhCaBP1识别的靶标集更有限的原因。