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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The activation mechanism of human porphobilinogen synthase by 2-mercaptoethanol: intrasubunit transfer of a reserve zinc ion and coordination with three cysteines in the active center
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The activation mechanism of human porphobilinogen synthase by 2-mercaptoethanol: intrasubunit transfer of a reserve zinc ion and coordination with three cysteines in the active center

机译:2-巯基乙醇激活人胆色素原合酶的机制:储备锌离子的亚基转移和在活性中心与三个半胱氨酸的配位

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Human porphobilinogen synthase [EC. 4. 2.1.24] is a homo-octamer enzyme. In the active center of each subunit, four cysteines are titrated with 5,5'-dithiobis( 2-nitrobenzoic acid). Cys(122), Cys(124) and Cys(132) are placed near two catalytic sites, Lys(199) and Lys(252), and coordinate a zinc ion, referred to as "a proximal zinc ion'', and Cys(223) is placed at the orifice of the catalytic cavity and coordinates a zinc ion, referred to as "a distal zinc ion'', with His(131). When the wild-type enzymes C122A (Cys(122) --> Ala), C124A (Cys(124) --> Ala), C132A (Cys(132) --> Ala) and C223A (Cys(223) --> Ala) were oxidized by hydrogen peroxide, the levels of activity were decreased. Two cysteines were titrated with 5,5'-dithiobis( 2-nitrobenzoic acid) in the wild-type enzyme, while on the other hand, one cysteine was titrated in the mutant enzymes. When wild-type and mutant enzymes were reduced by 2-mercaptoethanol, the levels of activity were increased: four and three cysteines were titrated, respectively, suggesting that a disulfide bond was formed among Cys(122), Cys(124) and Cys(132) under oxidizing conditions. We analyzed the enzyme-bound zinc ion of these enzymes using inductively coupled plasma mass spectrometry with gel-filtration chromatography. The results for C223A showed that the number of proximal zinc ions correlated to the level of enzymatic activity. Furthermore, zinc-ion-free 2-mercaptoethanol increased the activity of the wild-type enzyme without a change in the total number of zinc ions, but C223A was not activated. These findings suggest that a distal zinc ion moved to the proximal binding site when a disulfide bond among Cys(122), Cys(124) and Cys(132) was reduced by reductants. Thus, in the catalytic functioning of the enzyme, the distal zinc ion does not directly contribute but serves rather as a reserve as the next proximal one that catalyzes the enzyme reaction. A redox change of the three cysteines in the active center accommodates the catch and release of the reserve distal zinc ion placed at the orifice of the catalytic cavity.
机译:人胆色素原合酶[EC。 [4.2.1.24]是同八聚体酶。在每个亚基的活性中心,用5,5'-二硫代双(2-硝基苯甲酸)滴定四个半胱氨酸。 Cys(122),Cys(124)和Cys(132)放在两个催化位点Lys(199)和Lys(252)附近,并与称为“近端锌离子”的锌离子配位(223)被放置在催化腔的孔口处,并与His(131)协调称为“远侧锌离子”的锌离子。当野生型酶C122A(Cys(122)-> Ala),C124A(Cys(124)-> Ala),C132A(Cys(132)-> Ala)和C223A(Cys(223)- > Ala)被过氧化氢氧化,活性水平降低。在野生型酶中用5,5'-二硫代双(2-硝基苯甲酸)滴定两个半胱氨酸,而在突变酶中滴定一个半胱氨酸。当2-巯基乙醇还原野生型和突变型酶时,活性水平增加:分别滴定了四个和三个半胱氨酸,表明在Cys(122),Cys(124)和Cys( 132)在氧化条件下。我们使用凝胶过滤色谱-电感耦合等离子体质谱法分析了这些酶的酶结合锌离子。 C223A的结果表明,近端锌离子的数量与酶活性水平相关。此外,不含锌离子的2-巯基乙醇增加了野生型酶的活性,而锌离子的总数没有变化,但是C223A没有被激活。这些发现表明,当Cys(122),Cys(124)和Cys(132)之间的二硫键被还原剂还原时,远端锌离子移动到近端结合位点。因此,在酶的催化功能中,远端的锌离子不直接起作用,而是作为下一个催化酶反应的近端的储备。活性中心的三个半胱氨酸的氧化还原变化适应了捕获和释放放置在催化腔孔口的远端锌离子储备。

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