首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Activation of human biliverdin-IXα reductase by urea: Generation of kinetically distinct forms during the unfolding pathway
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Activation of human biliverdin-IXα reductase by urea: Generation of kinetically distinct forms during the unfolding pathway

机译:尿素激活人Biliverdin-IXα还原酶:在展开途径期间的动力学形式的产生

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Activation of enzymes by low concentrations of denaturants has been reported for a limited number of enzymes including lipocalin-type prostaglandin D synthase (L-PGDS) and adenylate kinase. During unfolding studies on human biliverdin-IXα reductase it was discovered that the enzyme is activated at low concentrations of urea. Under standard assay conditions the native enzyme displays pronounced substrate inhibition with biliverdin as variable substrate; however in the presence of 3 M urea, the substrate inhibition is abolished and the enzyme exhibits Michaelian kinetics. When the initial rate kinetics with NADPH as variable substrate are conducted in 3 M urea, the Vmax is increased 11-fold to 1.8 μmol/min/mg and the apparent Km for biliverdin increases from 1 to 3 μM. We report the existence of two kinetically distinct folded intermediates between the native and unfolded forms. When the period of incubation with urea was varied prior to measuring enzyme activity, the apparent Vmax was shown to decay to half that seen at zero time with a half life of 5.8 minutes, while the apparent Km for NADPH remains constant at approximately 5 μM. With NADH as cofactor the half life of the activated (A) form was 2.9 minutes, and this form decays in 3 M urea to a less active (LA) form. The apparent Km for NADH increases from 0.33 mM to 2 mM for the A and LA forms. These kinetically distinct species are reminiscent of the activity-enhanced and inactive forms of L-PGDS observed in the presence of urea and guanidine hydrochloride.
机译:据报道,通过低浓度的变性剂激活酶数有限数量的酶,包括脂质素型前列腺素D合酶(L-PGDS)和腺苷酸激酶。在展开对人Biliverdin-IXα还原酶的研究期间,发现酶在低浓度的尿素中被活化。在标准测定条件下,天然酶显示用Biliverdin作为可变基质的明显底物抑制;然而,在3米尿素存在下,废除底物抑制,并且酶呈现迈克利动力学。当用NADPH作为可变基质的初始速率动力学在3M尿素中进行时,VMAX增加到11倍至1.8μmol/ min / mg,并且Biliverdin的表观km从1〜3μm增加。我们举报了天然和展开形式之间的两个动力学折叠中间体的存在。当在测量酶活性之前改变与尿素的时间变化时,表观VMAX显示在零时间以5.8分钟的半衰期衰减至半衰期的一半,而NADPH的表观km保持恒定在约5μm。随着官方的辅助因子,活化剂(A)形式的半衰期为2.9分钟,这种形式以3M尿素衰减至较少的活性(La)形式。对于A和LA形式,NADH的表观km从0.33 mm增加到2 mm。这些动力学上不同的物种是在存在尿素和盐酸胍的存在下观察到的L-PGDS的活性增强和无活性形式的物种。

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