Naumoff D G
State Institute for Genetics and Selection of Industrial Microorganisms, Moscow, Russia.
Proteins. 2001 Jan 1;42(1):66-76. doi: 10.1002/1097-0134(20010101)42:1<66::aid-prot70>3.0.co;2-4.
Comparison of the amino acid sequences of four families of glycosyl hydrolases reveals that they are homologous and have several common conserved regions. Two of these families contain beta-fructosidases (glycosyl hydrolase families GH32 and GH68) and the other two include alpha-L-arabinases and beta-xylosidases (families GH43 and GH62). The latter two families are proposed to be grouped together with the former two into the beta-fructosidase (furanosidase) superfamily. Several ORFs can be considered as a fifth family of the superfamily on the basis of sequence similarity. It is shown for the first time that a glycosyl hydrolase superfamily can include enzymes with both inversion and retention mechanism of action. Composition of the active center for enzymes of the superfamily is discussed.
对四类糖基水解酶的氨基酸序列进行比较后发现,它们具有同源性且有几个共同的保守区域。其中两类包含β-果糖苷酶(糖基水解酶家族GH32和GH68),另外两类包括α-L-阿拉伯糖苷酶和β-木糖苷酶(家族GH43和GH62)。后两类家族被提议与前两类一起归为β-果糖苷酶(呋喃糖苷酶)超家族。基于序列相似性,几个开放阅读框可被视为该超家族的第五个家族。首次表明一个糖基水解酶超家族可以包括作用机制既有转化又有保留的酶。讨论了该超家族酶活性中心的组成。