Kuwano Yuko, Yoneda Kazunari, Kawaguchi Yuya, Araki Norie, Araki Tomohiro
Department of Bioscience, School of Agriculture, Tokai University.
Biosci Biotechnol Biochem. 2013;77(11):2269-77. doi: 10.1271/bbb.130534. Epub 2013 Nov 7.
To determine the structure and functional relationships of invertebrate lysozymes, we isolated a new invertebrate (i)-type lysozyme from the common orient clam (Meretrix lusoria) and determined the complete amino acid sequence of two isozymes that differed by one amino acid. The determined sequence showed 65% similarity to a lysozyme from Venerupis philippinarum (Tapes japonica), and it was therefore classified as an i-type lysozyme. The lytic activities of this lysozyme were similar to those of previously reported bivalve i-type lysozymes, but unlike the V. philippinarum lysozyme, it did not exhibit an increase in activity in high ionic strength. Our data suggest that this lysozyme does not have a dimeric structure, due to the replacement of Lys108 which contributes to dimer formation in the V. philippinarum lysozyme. GlcNAc oligomer activities suggested an absence of transglycosylation activity and a higher number of subsites on this enzyme compared with hen egg lysozyme.
为了确定无脊椎动物溶菌酶的结构与功能关系,我们从中国蛤蜊(Meretrix lusoria)中分离出一种新的无脊椎动物(i)型溶菌酶,并测定了两种相差一个氨基酸的同工酶的完整氨基酸序列。所确定的序列与菲律宾蛤仔(Venerupis philippinarum,即日本镜蛤Tapes japonica)的溶菌酶有65%的相似性,因此被归类为i型溶菌酶。这种溶菌酶的裂解活性与先前报道的双壳贝类i型溶菌酶相似,但与菲律宾蛤仔溶菌酶不同的是,它在高离子强度下活性没有增加。我们的数据表明,由于导致菲律宾蛤仔溶菌酶形成二聚体的赖氨酸108被取代,这种溶菌酶不具有二聚体结构。与鸡蛋清溶菌酶相比,N-乙酰葡糖胺寡聚物活性表明该酶不存在转糖基化活性且有更多的亚位点。