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1.
在酶的盐酸胍变性和热变性过程中,尝试采用电荷传递反应分析方法和电子自旋共振方法考察了酶活性部位的构象变化。酶活力与构象的变化行为表明,酶的活性部位通道先于酶分子的整体构象而发生变化,它是与酶的失活同时发生的。尽管酶活性部位中的金属离子保证了酶较高的稳定性,但酶的活性部位,特别是活性通道仍然是相对脆弱的。  相似文献   

2.
Fe(CN)64-与铜锌超氧化物歧化酶(CuZn-SOD)间的电荷传递反应发生在酶的活性部位,电荷传递反应的速度和幅度对由变性引起的酶活性部位的构象变化非常敏感.对于所有的变性酶样品,电荷传递反应的速度都不同程度的下降,这与每个样品的活力下降相对应.反应速度的下降反应了酶变性后引起的活性通道构象及其间静电场的破坏.在不同pH条件下变性的酶样品,其电荷传递反应幅度的变化表明,活性部位His残基的静电相互作用对变性过程中活性部位的构象变化可能是重要的.由电荷传递反应参数得到的活性部位构象变化速度与酶的失活速度接近.  相似文献   

3.
应用荧光发射光谱,圆二色光谱,二阶导数光谱和紫外差吸收光谱等监测手段,研究了酵母乙醇脱氢酶在胍溶液中的去折叠。比较不同盐酸胍浓度下酵母乙醇脱氢酶的失活与构象变化,实验表明酶的失活先于构象变化:在低浓度胍溶液中,构象尚未发生明显变化时,酶活几乎已经完全丧失。由上述结果可见,含有辅基金属离子Zn~(2+)酶的活性部位较酶分子的整体结构也具有柔性。  相似文献   

4.
酵母乙醇脱氢酶胍变性时的失活与去折叠的比较研究   总被引:1,自引:1,他引:0  
应用荧光发射光谱,圆二色光谱,二阶导数光谱和紫外差吸收光谱等监测手段,研究了酵母乙醇脱氢酶在胍溶液中的去折叠,比较不同盐酸胍浓度下酵母乙醇脱氢酶的失活与构象变化,实验表明酶的失活先于构象变化,在低浓度胍溶液中,构象尚未发生明显变化时,酶活几乎已经完全丧失,由上述结果可见,含有辅基金属离子Zn^2+酶的活性部位较酶分子的整体结构也具有柔性。  相似文献   

5.
以紫外差光谱、荧光光谱为监测手段对金黄色葡萄球菌核酸酶类似物(SNase R)在胍溶液中构象与活力变化进行了比较.SNase R在Llmol L0.8mol L和0.5mol L胍溶液变性时变性过程均为两个一级反应,但是酶在上述胍浓度下失活的速度远快于构象变化的速度:酶在同一胍浓度下活力丧失的程度也远快于构象变化的程度.上述结果表明:SNase R的活性部位可能位于柔性较大的区域.  相似文献   

6.
钙调神经磷酸酶在胍变性过程中活力及构象变化的比较   总被引:1,自引:0,他引:1  
钙调神经磷酸酶(CaN)在盐酸胍溶液中的内源荧光、远紫外CD谱及剩余活力的变化提示:CaN的酶活力在胍浓度为0.5mol/L左右可完全丧失,同时伴有内源荧光强度的下降,333nm最大发射峰的红移(提示了色氨酸和酪氨酸残基的暴露)。比较不同胍浓度下牛脑CaN的失活与整体构象变化,表明酶的失活先于整体构象变化。在0.6mol/L胍溶液中,内源荧光变化的动力学过程只能测出一相,而酶失活的动力学过程为快、慢两相,快相动力学速度常数比整体构象变化速度常数大1-2个数量级,慢相失活速度常数与整体构象变化速度常数相近。提示低浓度胍可引起该酶的完全失活,活性部位的空间构象比整个酶分子的构象更易受到变性剂的扰乱。  相似文献   

7.
鸭肝脂肪酸合成酶的胍变性与失活   总被引:3,自引:0,他引:3  
报道了鸭肝脂肪酸俣成酶在胍变性过程中构变性过程中构象变化和活性变化的关系,首次验证了邹承鲁提出的酶活性部位构象的理论适用于多功能复合酶,同时该酶变性及复性均可测定出多个阶段,且证明有无活性稳态酶存在,在低浓度盐酸胍溶液中该酶的全反应活性和其中两个还原部位单独活性被同步可逆抑制,随着胍浓度增高,出现不可逆失活且程度和速度均迅速提高,在0.54mol/L胍中该酶全反应活性在1.5分种内已有一半不可逆失  相似文献   

8.
铜锌超氧化物歧化酶的盐酸胍变性   总被引:2,自引:0,他引:2  
采用发生在Fe(cn)^4-6离子与铜锌超氧化物歧化酶活性部位的Cu^2+离子间的电荷传递反应敏感地检测到了胍变性引起的酶活性部位的微弱构象变化。胍变性样品的活力变化经离子强度修正而测得,紫外吸收,CD,内源荧光,和ESR分析分别从不同角度反映了酶分子整体构象的变化情况。  相似文献   

9.
从 1995年以前的蛋白质数据库中选出了 3 7套不同酶的晶体学数据 ,分别对其活性部位关键残基和整个分子的晶体学温度因子 (B)进行了统计分析 .结果显示 ,3 7种酶中有 2 6种酶的活性部位关键残基相对于分子整体而言具有较低的B因子 ,只有 7种较高 .这表明 ,在晶体状态下 ,大多数天然酶的活性部位关键残基可能具有比分子整体更稳定的构象 .对酶活性部位在变性剂的作用下表现出柔性的原因进行了讨论 .  相似文献   

10.
Palczewsski等[1]以邻苯二甲醛修饰醛缩酶活性部位的氨基和流基以形成一异蚓噪环,利用该基团的荧光特性来探测醛缩酶的活性部位构象,Weq[2],Le[3]并成功地运用这一方法研究肌酸激酶和酵母乙醇脱氢酶的活性部位构象变化.中华猕猴桃蛋白酶的唯一游离流基(CyS-25)是催化功能团【'」,而且氨基也是活性部位的必需基因【到,符合邻苯二甲醛的反应性,所以我们借鉴Pal_ski等的方法【1]将这一荧光基因引人中华猕猴桃蛋白酶,用以探测该酶在抓溶液中活性部位的构象变化,并与相应的活力变化以及酶的内源荧光及CD谱变化作比较.1材…  相似文献   

11.
The conformation changes of dihydrofolate reductase (DHFR) from chicken liver in guanidine hy-drochloride were monitored by protein intrinsic fluorescence, hydrophobic fluorescence probe TNS and limited proteol-ysis by proteinase K. The kinetics of the enzyme denaturation were also studied and compared with its activity changes. It was indicated by the enhanced fluorescence of 2-p-toluidinylnaphthalene (TNS) that a subtle conforma-tional change of the enzyme in dilute GuHCl parallels GuHCl-induced activation. At GuHCl concentration higher than 0.75 mol/L, the conformational change can be detected by increased susceptibility of the enzyme to proteinase K, but no significant gross conformational change of the enzyme molecule is observed by intrinsic fluorescence up to a GuHCl concentration of 1.2 mol/L. The results suggest that the denaturation of DHFR by GuHCl does not follow strictly the two-state model. The enzyme seems to open up sequentially with increasing concentrations of denaturants, mainly at th  相似文献   

12.
Changes of activity and conformation of Ampullarium crossean beta-glucosidase in different concentrations of guanidine hydrochloride (GuHCl) have been studied by measuring the fluorescence spectra and its relative activity after denaturation. The fluorescence intensity of the enzyme decreased distinctly with increasing guanidine concentrations, the emission peaks appeared red shifted (from 338.4 to 350.8 nm), whereas a new fluorescence emission peak appeared near 310 nm. Changes in the conformation and catalytic activity of the enzyme were compared. A corresponding rapid decrease in catalytic activity of the enzyme was also observed. The extent of inactivation was greater than that of conformational changes, indicating that the active site of the enzyme is more flexible than the whole enzyme molecule. k(+0)>k(+0)' also showed that the enzyme was protected by substrate to a certain extent during guanidine denaturation.  相似文献   

13.
Xie XL  Chen QX  Gong M  Wang Q  Shi Y 《The protein journal》2005,24(5):267-273
The effects of guanidinium chloride (GuHCl) on the activity of Penaeus vannamei β-N-acetyl-d-glucosaminidase (NAGase) have been studied. The results show that GuHCl, at appropriate concentrations, can lead to reversible inactivation of the enzyme, and the IC50 is estimated to be 0.6 M. Changes of activity and conformation of the enzyme in different concentrations of GuHCl have been studied by measuring the fluorescence spectra and its relative activity after denaturation. The fluorescence intensity of the enzyme decreases distinctly with increasing GuHCl concentrations, and the emission peaks appear red-shifted (from 339.4 to 360 nm). Changes in the conformation and catalytic activity of the enzyme are compared. The extent of inactivation is greater than that of conformational changes, indicating that the active site of the enzyme is more flexible than the whole enzyme molecule. The kinetics of inactivation has been studied using the kinetic method of the substrate reaction. The rate constants of inactivation have been determined. The value of k+0 is larger than that of k+0 which suggests that the enzyme is protected by substrate to a certain extent during guanidine denaturation.  相似文献   

14.
The thermostability of an enzyme that exhibits phytase and acid phosphatase activities was studied. Kinetics of inactivation and unfolding during thermal denaturation of the enzyme were compared. The loss of phytase activity on thermal denaturation is most suggestive of a reversible process. As for acid phosphatase activities, an interesting phenomenon was observed; there are two phases in thermal inactivation: when the temperature was between 45 and 50 degrees C, the thermal inactivation could be characterized as an irreversible inactivation which had some residual activity and when the temperature was above 55 degrees C, the thermal inactivation could be characterized as an irreversible process which had no residual activity. The microscopic rate constants for the free enzyme and substrate-enzyme complex were determined by Tsou's method [Adv. Enzymol. Relat. Areas Mol. Biol. 61 (1988) 381]. Fluorescence analyses indicate that when the enzyme was treated at temperatures below 60 degrees C for 60 min, the conformation of the enzyme had no detectable change; when the temperatures were above 60 degrees C, some fluorescence red-shift could be observed with a decrease in emission intensity. The inactivation rates (k(+0)) of free enzymes were faster than those of conformational changes during thermal denaturation at the same temperature. The rapid inactivation and slow conformational changes of phytase during thermal denaturation suggest that inactivation occurs before significant conformational changes of the enzyme, and the active site of this enzyme is situated in a relatively fragile region which makes the active site more flexible than the molecule as a whole.  相似文献   

15.
Green crab (Scylla serrata) alkaline phosphatase (EC 3.1.3.1) is a metalloenzyme, each active site in which contains a tight cluster of two zinc ions and one magnesium ion. Unfolding and inactivation of the enzyme during denaturation in guanidinium chloride (GuHCl) solutions of different concentrations have been compared. The kinetic theory of the substrate reaction during irreversible inhibition of enzyme activity previously described by Tsou [(1988),Adv. Enzymol. Related Areas Mol. Biol. 61, 381–436] has been applied to a study on the kinetics of the course of inactivation of the enzyme during denaturation by GuHCl. The rate constants of unfolding and inactivation have been determined. The results show that inactivation occurs before noticeable conformational change can be detected. It is suggested that the active site of green crab alkaline phosphatase containing multiple metal ions is also situated in a limited region of the enzyme molecule that is more fragile to denaturants than the protein as a whole.  相似文献   

16.
Green crab (Scylla serrata) alkaline phosphatase (EC 3.1.3.1) is a metalloenzyme, each active site in which contains a tight cluster of two zinc ions and one magnesium ion. Unfolding and inactivation of the enzyme during denaturation in guanidinium chloride (GuHCl) solutions of different concentrations have been compared. The kinetic theory of the substrate reaction during irreversible inhibition of enzyme activity previously described by Tsou [(1988),Adv. Enzymol. Related Areas Mol. Biol. 61, 381–436] has been applied to a study on the kinetics of the course of inactivation of the enzyme during denaturation by GuHCl. The rate constants of unfolding and inactivation have been determined. The results show that inactivation occurs before noticeable conformational change can be detected. It is suggested that the active site of green crab alkaline phosphatase containing multiple metal ions is also situated in a limited region of the enzyme molecule that is more fragile to denaturants than the protein as a whole.  相似文献   

17.
研究了阳离子去污剂-溴化+烷基三甲基铵变性时氨基酰酶的失活与构象变化.当用溴化+烷基三甲基铵滴定氨基酰化酶时,随着去污剂浓度增大,酶的活力逐渐丧失,至50mmolL时酶完全失活.用荧光发射光谱(295nm激发)的方法监测了氨基酰化酶的构象变化.发现氨基酰化酶失活先于构象变化.从这一结果看来.金属酶的活性部位构象可能也是比整个分子的构象具有较大的柔性或运动性.  相似文献   

18.
研究了阳离子去污剂-溴化+烷基三甲基铵变性时氨基酰酶的失活与构象变化.当用溴化+烷基三甲基铵滴定氨基酰化酶时,随着去污剂浓度增大,酶的活力逐渐丧失,至50mmolL时酶完全失活.用荧光发射光谱(295nm激发)的方法监测了氨基酰化酶的构象变化.发现氨基酰化酶失活先于构象变化.从这一结果看来.金属酶的活性部位构象可能也是比整个分子的构象具有较大的柔性或运动性.  相似文献   

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