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ADP-核糖基转移酶的大分子缔合及其与酶活性的相关性。

Macromolecular association of ADP-ribosyltransferase and its correlation with enzymic activity.

作者信息

Bauer P I, Buki K G, Hakam A, Kun E

机构信息

Department of Pharmacology, University of California, San Francisco 94143-0130.

出版信息

Biochem J. 1990 Aug 15;270(1):17-26. doi: 10.1042/bj2700017.

Abstract

The macromolecular self-association of ADP-ribosyltransferase protein in solution was studied by several experimental techniques: quantitative gel filtration, electrophoretic analyses in non-denaturing gels, and cross-linking the enzyme protein with glutaraldehyde, dimethyl pimelimidate, dimethyl suberimidate, dimethyl 3,3'-dithiobisproprionimidate and tetranitromethane. The self-association of the polypeptide components obtained by plasmin digestion was also determined by using the above cross-linking agents. Monomers and cross-linked dimers of the enzyme protein, possessing enzymic activity, were separated in non-denaturing gels by electrophoresis. The basic polypeptide fragments, exhibiting molecular masses of 29 kDa and 36 kDa, self-associated, whereas the polypeptides with molecular masses of 56 kDa and 42 kDa associated only to a negligible extent, indicating that the peptide regions that also bind DNA and histones are probable sites of self-association in the intact enzyme molecule. Macromolecular association of the enzyme was indicated by a protein-concentration-dependent red-shift in protein fluorescence. The specific enzymic activity of the isolated ADP-ribosyltransferase depended on the concentration of the enzyme protein, and at 2.00 microM concentration the enzyme was self-inhibitory. Dilution of the enzyme protein to 30-40 nM resulted in a large increase in its specific activity. Further dilution to 1-3 nM coincided with a marked decrease of specific activity. Direct enzymic assays of electrophoretically separated monomers and cross-linked dimers demonstrated that the dimer appears to be the active molecular species that catalyses poly(ADP-ribose) synthesis. The NAD+ glycohydrolase activity of the enzyme was also dependent on protein concentration and was highest at 1-3 nM enzyme concentration, when polymerase activity was minimal, indicating that the monomeric enzyme behaved as a glycohydrolase, whereas poly(ADP-ribosyl)ation of enzyme molecules was maximal when the enzyme tends to be self-associated to the dimeric form.

摘要

采用多种实验技术研究了溶液中ADP-核糖基转移酶蛋白的大分子自缔合:定量凝胶过滤、非变性凝胶电泳分析,以及用戊二醛、二甲基庚二酸亚胺、二甲基辛二酸亚胺、二甲基3,3'-二硫代双丙酸亚胺和四硝基甲烷使酶蛋白交联。还使用上述交联剂测定了纤溶酶消化得到的多肽组分的自缔合。具有酶活性的酶蛋白单体和交联二聚体通过非变性凝胶电泳分离。分子量为29 kDa和36 kDa的碱性多肽片段发生自缔合,而分子量为56 kDa和42 kDa的多肽仅在可忽略的程度上发生缔合,这表明完整酶分子中也结合DNA和组蛋白的肽区域可能是自缔合位点。酶的大分子缔合通过蛋白质荧光中蛋白质浓度依赖性的红移来表明。分离得到的ADP-核糖基转移酶的比酶活性取决于酶蛋白的浓度,在2.00 microM浓度下酶具有自抑制作用。将酶蛋白稀释至30 - 40 nM导致其比活性大幅增加。进一步稀释至1 - 3 nM则伴随着比活性的显著降低。对电泳分离的单体和交联二聚体进行的直接酶活性测定表明,二聚体似乎是催化聚(ADP-核糖)合成的活性分子形式。该酶的NAD+糖水解酶活性也取决于蛋白质浓度,在酶浓度为1 - 3 nM时最高,此时聚合酶活性最小,这表明单体酶表现为糖水解酶,而当酶倾向于自缔合形成二聚体形式时,酶分子的聚(ADP-核糖基)化最大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e4c/1131671/19414fbd4765/biochemj00177-0028-a.jpg

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