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Mechanism(s) of action of heavy metals to investigate the regulation of plastidic glucose-6-phosphate dehydrogenase

机译:重金属的作用机制,研究塑性葡萄糖-6-磷酸脱氢酶的调节

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The regulation of recombinant plastidic glucose-6P dehydrogenase from Populus trichocarpa ( Pt P2-G6PDH - EC 1.1.1.49) was investigated by exposing wild type and mutagenized isoforms to heavy metals. Nickel and Cadmium caused a marked decrease in Pt P2-G6PDH WT activity, suggesting their poisoning effect on plant enzymes; Lead (Pb++) was substantially ineffective. Copper (Cu++) and Zinc (Zn++) exposition resulted in strongest decrease in enzyme activity, thus suggesting a physiological competition with Magnesium, a well-known activator of G6PDH activity. Kinetic analyses confirmed a competitive inhibition by Copper, and a mixed inhibition by (Cd++). Mutagenized enzymes were differently affected by HMs: the reduction of disulfide (C175–C183) exposed the NADP+ binding sites to metals; C145 participates to NADP+ cofactor binding; C194 and C242 are proposed to play a role in the regulation of NADP+/NADPH binding. Copper (and possibly Zinc) is able to occupy competitively Magnesium (Mg++) sites and/or bind to NADP+, resulting in a reduced access of NADP+ sites on the enzyme. Hence, heavy metals could be used to describe specific roles of cysteine residues present in the primary protein sequence; these results are discussed to define the biochemical mechanism(s) of inhibition of plant plastidic G6PDH.
机译:通过将野生型和诱变的同种型暴露于重金属,研究了从杨树(Pt P2-G6PDH-EC 1.1.1.1.49)的重组塑性葡萄糖-6P脱氢酶的调节。镍和镉引起Pt P2-G6PDH WT活性的显着降低,表明它们对植物酶的中毒作用;铅(Pb ++ )显着无效。铜(Cu ++ )和锌(Zn ++ )阐明导致酶活性最强,因此表明镁的生理竞争,一种众所周知的活化剂G6PDH活动。动力学分析证实铜的竞争抑制,并通过(CD ++ )的混合抑制。诱变酶受到影响的不同影响:二硫化物的还原(C 175℃-C-C-C 183℃>)将NADP + / SOP>结合位点暴露于金属; C 145 参与NADP + Cofactor绑定; C 194 和C 242 在NADP + / NADPH结合的调节中起作用。铜(和可能锌)能够占据竞争性镁(Mg ++ )站点和/或与NADP + 结合,导致NADP 的缩短访问酶+ / sup>酶网站。因此,重金属可用于描述在原代蛋白质序列中存在的半胱氨酸残基的特定作用;讨论了这些结果以确定植物塑性G6PDH的抑制生化机制。

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