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人源N-乙酰己糖胺酶A和B的化学特性及亚基结构

Chemical characterization and subunit structure of human N-acetylhexosaminidases A and B.

作者信息

Geiger B, Arnon R

出版信息

Biochemistry. 1976 Aug 10;15(16):3484-93. doi: 10.1021/bi00661a014.

Abstract

Human hexosaminidases A and B were purified from placentae, using two stages of affinity chromatography, to a high degree of purity. Each enzyme was purified 5000-6000-fold, and isolated in 25-40% yield. Enzyme preparations appeared homogeneous in the analytical ultracentrifuge and by acrylamide gel electrophoresis. Hexosaminidase A contained 1.65 residues of sialic acid per molecule, whereas no sialic acid was present in hexosaminidase B. The molecular weights of the A and B isozymes as determined by gel filtration and sedimentation equilibrium are 100 000 and 108 000, respectively. In 5 M guanidine-HCl each of the enzymes yielded a 50 000-dalton species, which can further be dissociated into 25 000-dalton polypeptide chains by reduction and alkylation. The hexosaminidase B yielded one type of polypeptide chain, denoted beta, whereas the product from hexosaminidase A could be separated by ion-exchange chromatography into two species of chains, denoted alpha and beta, in equal amounts. The amino acid compositions of the separated alpha and beta chains were determined, and were found to correlate well with those of the intact enzymes. These findings enable the construction of a plausible model for the molecular structure of both enzymes. According to this model hexosaminidase A is composed of two subunits alpha2 and beta2, in which the two polypeptide chains are linked by a disulfide bridge. The structure of hexosaminidase B is, in parallel, beta2beta2. The suggested model is discussed in view of the accumulated information about the interrelationships between hexosaminidase A and B and the genetic metabolic disorders with which they are involved.

摘要

人己糖胺酶A和B通过两阶段亲和层析从胎盘组织中纯化至高度纯品。每种酶均纯化了5000 - 6000倍,产率为25% - 40%。酶制剂在分析超速离心机和丙烯酰胺凝胶电泳中显示为均一状态。己糖胺酶A每分子含有1.65个唾液酸残基,而己糖胺酶B中不存在唾液酸。通过凝胶过滤和沉降平衡测定,A和B同工酶的分子量分别为100000和108000。在5M盐酸胍中,每种酶都产生一个50000道尔顿的组分,通过还原和烷基化可进一步解离为25000道尔顿的多肽链。己糖胺酶B产生一种类型的多肽链,称为β链,而己糖胺酶A的产物通过离子交换层析可分离为等量的两种链,分别称为α链和β链。测定了分离出的α链和β链的氨基酸组成,发现与完整酶的氨基酸组成密切相关。这些发现有助于构建两种酶分子结构的合理模型。根据该模型,己糖胺酶A由两个亚基α2和β2组成,其中两条多肽链通过二硫键相连。平行地,己糖胺酶B的结构为β2β2。结合关于己糖胺酶A和B之间相互关系以及它们所涉及的遗传代谢紊乱的累积信息,对所提出的模型进行了讨论。

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