首页> 外文期刊>Biochemistry >Phosphatidylcholine activation of human heart (R)-3-hydroxybutyrate dehydrogenase mutants lacking active center sulfhydryls: site-directed mutagenesis of a new recombinant fusion protein.
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Phosphatidylcholine activation of human heart (R)-3-hydroxybutyrate dehydrogenase mutants lacking active center sulfhydryls: site-directed mutagenesis of a new recombinant fusion protein.

机译:缺乏活性中心巯基的人类心脏(R)-3-羟基丁酸脱氢酶突变体的磷脂酰胆碱活化:一种新的重组融合蛋白的定点诱变。

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摘要

(R)-3-Hydroxybutyrate dehydrogenase (BDH) is a lipid-requiring mitochondrial enzyme with a specific requirement of phosphatidylcholine (PC) for function. A plasmid has been constructed to express human heart (HH) BDH in Escherichia coli as a hexahistidine-tagged fusion protein (HH-Histag-BDH). A rapid two-step affinity purification yields active HH-Histag-BDH (and six mutants) with high specific activity ( approximately 130 micromol of NAD(+) reduced.min(-1).mg(-1)). HH-Histag-BDH has no activity in the absence of phospholipid and exhibits a specific requirement of PC for function. The HH-Histag-BDH-PC complex (and HH-BDH derived therefrom by enterokinase cleavage) has apparent Michaelis constants (K(m) values) for NAD(+), NADH, (R)-3-hydroxybutyrate (HOB), and acetoacetate (AcAc) similar to those for bovine heart or rat liver BDH. A computed structural model of HH-BDH predicts the two active center sulfhydryls to be C69 (near the adenosine moiety of NAD) and C242. With both sulfhydryls derivatized, BDH has minimal activity, but site-directed mutagenesis of C69 and/or C242 now shows that neither of these cysteines is required for PC activation or catalysis (the double mutant, C69A/C242A, is highly active with essentially normal kinetic parameters). Six cysteine mutants each have an increased K(m)(NADH) (2-6-fold) but an unchanged K(m)(NAD)+. The C242S and C69A/C242S enzymes (but not the analogous C242A mutants nor the C69A or C69S mutants) exhibit approximately 10-fold increases in K(m)(HOB) and K(m)(AcAc), reflecting an altered substrate binding site. Thus, although C242 (in the C-terminal lipid binding domain of BDH) is close to the active site, it appears to be in a hydrophobic environment and only indirectly defines the substrate binding site at the catalytic center of BDH.
机译:(R)-3-羟基丁酸脱氢酶(BDH)是一种需要脂质的线粒体酶,对磷脂酰胆碱(PC)的功能有特殊要求。已经构建了质粒,以六组氨酸标记的融合蛋白(HH-Histag-BDH)在大肠杆菌中表达人心脏(HH)BDH。快速的两步亲和纯化可产生具有高比活性的活性HH-Histag-BDH(和六个突变体)(约130微摩尔的NAD(+)减少.min(-1).mg(-1))。 HH-Histag-BDH在没有磷脂的情况下不具有活性,并且对PC的功能具有特殊要求。 HH-Histag-BDH-PC复合物(以及通过肠激酶裂解从中衍生的HH-BDH)对于NAD(+),NADH,(R)-3-羟基丁酸酯(HOB)具有明显的米氏常数(K(m)值),乙酰乙酸酯(AcAc)与牛心或大鼠肝脏BDH相似。计算的HH-BDH结构模型预测两个活性中心巯基分别为C69(靠近NAD的腺苷部分)和C242。两种巯基均被衍生后,BDH的活性最低,但C69和/或C242的定点诱变表明PC活化或催化均不需要这些半胱氨酸(双重突变体C69A / C242A具有很高的活性,基本上是正常的动力学参数)。六个半胱氨酸突变体每个具有增加的K(m)(NADH)(2-6倍),但没有改变的K(m)(NAD)+。 C242S和C69A / C242S酶(但不是类似的C242A突变体,也不是C69A或C69S突变体)在K(m)(HOB)和K(m)(AcAc)中表现出大约10倍的增加,反映了底物结合位点的改变。因此,尽管C242(在BDH的C末端脂质结合结构域中)靠近活性位点,但是它似乎处于疏水环境中,并且仅在BDH的催化中心间接地限定了底物结合位点。

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