Department of Chemistry and Biochemistry, Florida State University, Tallahassee, Florida 32306, USA.
J Biol Chem. 2011 Mar 18;286(11):9338-50. doi: 10.1074/jbc.M110.202796. Epub 2011 Jan 6.
Lombricine kinase is a member of the phosphagen kinase family and a homolog of creatine and arginine kinases, enzymes responsible for buffering cellular ATP levels. Structures of lombricine kinase from the marine worm Urechis caupo were determined by x-ray crystallography. One form was crystallized as a nucleotide complex, and the other was substrate-free. The two structures are similar to each other and more similar to the substrate-free forms of homologs than to the substrate-bound forms of the other phosphagen kinases. Active site specificity loop 309-317, which is disordered in substrate-free structures of homologs and is known from the NMR of arginine kinase to be inherently dynamic, is resolved in both lombricine kinase structures, providing an improved basis for understanding the loop dynamics. Phosphagen kinases undergo a segmented closing on substrate binding, but the lombricine kinase ADP complex is in the open form more typical of substrate-free homologs. Through a comparison with prior complexes of intermediate structure, a correlation was revealed between the overall enzyme conformation and the substrate interactions of His(178). Comparative modeling provides a rationale for the more relaxed specificity of these kinases, of which the natural substrates are among the largest of the phosphagen substrates.
蚓激酶是磷酸原激酶家族的成员,也是肌氨酸和精氨酸激酶的同源物,这些酶负责缓冲细胞内的 ATP 水平。通过 X 射线晶体学确定了来自海洋蠕虫 Urechis caupo 的蚓激酶结构。一种形式被结晶为核苷酸复合物,另一种形式则没有底物。这两种结构彼此相似,与其他磷酸原激酶的底物结合形式相比,与同源物的无底物形式更相似。活性位点特异性环 309-317 在同源物的无底物结构中是无序的,并且从精氨酸激酶的 NMR 中已知其固有动态,在两种蚓激酶结构中都得到了解决,为理解环的动力学提供了更好的基础。磷酸原激酶在底物结合时会经历分段关闭,但蚓激酶 ADP 复合物处于更典型的无底物同源物的开放形式。通过与中间结构的先前复合物进行比较,揭示了总体酶构象与 His(178)的底物相互作用之间的相关性。比较建模为这些激酶提供了更宽松的特异性的依据,其天然底物是磷酸原底物中最大的底物之一。