首页> 美国卫生研究院文献>Biochemical Journal >Mutation of an EF-hand Ca(2+)-binding motif in phospholipase C of Dictyostelium discoideum: inhibition of activity but no effect on Ca(2+)-dependence.
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Mutation of an EF-hand Ca(2+)-binding motif in phospholipase C of Dictyostelium discoideum: inhibition of activity but no effect on Ca(2+)-dependence.

机译:盘基网柄菌的磷脂酶C中的EF手Ca(2+)结合基序的突变:抑制活性但对Ca(2+)依赖性没有影响。

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摘要

Phosphoinositide-specific phospholipase C (PLC) is dependent on Ca2+ ions for substrate hydrolysis. The role of an EF-hand Ca(2+)-binding motif in Ca(2+)-dependent PLC activity was investigated by site-directed mutagenesis of the Dictyostelium discoideum PLC enzyme. Amino acid residues with oxygen-containing side chains at co-ordinates x, y, z, -x and -z of the putative Ca(2+)-binding-loop sequence were replaced by isoleucine (x), valine (y) or alanine (z, -x and -z). The mutated proteins were expressed in a Dictyostelium cell line with a disrupted plc gene displaying no endogenous PLC activity, and PLC activity was measured in cell lysates at different Ca2+ concentrations. Replacement of aspartate at position x, which is considered to play an essential role in Ca2+ binding, had little effect on Ca2+ affinity and maximal enzyme activity. A mutant with substitutions at both aspartate residues in position x and y also showed no decrease in Ca2+ affinity, whereas the maximal PLC activity was reduced by 60%. Introduction of additional mutations in the EF-hand revealed that the Ca2+ concentration giving half-maximal activity was unaltered, but PLC activity levels at saturating Ca2+ concentrations were markedly decreased. The results demonstrate that, although the EF-hand domain is required for enzyme activity, it is not the site that regulates the Ca(2+)-dependence of the PLC reaction.
机译:磷脂酰肌醇特异性磷脂酶C(PLC)依赖于Ca2 +离子进行底物水解。 EF手Ca(2+)结合基序在Ca(2+)依赖的PLC活动中的作用通过Dictyostelium discoideum PLC酶的定点诱变研究。在假定的Ca(2+)结合环序列的坐标x,y,z,-x和-z处具有含氧侧链的氨基酸残基被异亮氨酸(x),缬氨酸(y)或丙氨酸(z,-x和-z)。突变蛋白在Dictyostelium细胞系中表达,其plc基因被破坏,没有内源PLC活性,并且在不同Ca2 +浓度的细胞裂解物中测量了PLC活性。 X位置的天冬氨酸的取代被认为在Ca2 +的结合中起着至关重要的作用,对Ca2 +的亲和力和最大的酶活性影响很小。 x和y位置的两个天冬氨酸残基都被取代的突变体也没有显示Ca2 +亲和力的降低,而最大PLC活性却降低了60%。在EF手中引入其他突变表明,给出最大活性一半的Ca2 +浓度没有改变,但饱和Ca2 +浓度下的PLC活性水平明显降低。结果表明,尽管EF手域是酶活性所必需的,但不是调节PLC反应Ca(2+)依赖性的位点。

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