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首页> 外文期刊>Archives of Biochemistry and Biophysics >Substrate specificity of the cytochrome P450 enzymes CYP79A1 and CYP71E1 involved in the biosynthesis of the cyanogenic glucoside dhurrin in Sorghum bicolor (L.) Moench.
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Substrate specificity of the cytochrome P450 enzymes CYP79A1 and CYP71E1 involved in the biosynthesis of the cyanogenic glucoside dhurrin in Sorghum bicolor (L.) Moench.

机译:细胞色素P450酶CYP79A1和CYP71E1的底物特异性与高粱双色(L.)Moench中的氰基葡萄糖苷Dhurrin的生物合成有关。

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The two multifunctional cytochrome P450 enzymes, CYP79A1 and CYP71E1, involved in the biosynthesis of the cyanogenic glucoside dhurrin in Sorghum bicolor (L.) Moench have been characterized with respect to substrate specificity and cofactor requirements using reconstituted, recombinant enzymes and sorghum microsomes. CYP79A1 has a very high substrate specificity, tyrosine being the only substrate found. CYP71E1 has less stringent substrate requirements and metabolizes aromatic oximes efficiently, whereas aliphatic oximes are slowly metabolized. Neither CYP79A1 nor CYP71E1 catalyze the metabolism of a range of different herbicides. The reported resistance of sorghum to bentazon is therefore not linked to the presence of CYP79A1 or CYP71E1. NADPH is a much better cofactor than NADH although NADH does support the entire catalytic cycle of both P450 enzymes. Km and Vmax values for NADPH when supporting CYP71E1 activity are 0.013 mM and 111 nmol/mg protein/s. For NADH, the corresponding values are 0. 3 mM and 42 nmol/mg protein/s. CYP79A1 is a fairly stable enzyme. In contrast, CYP71E1 is labile and prone to rapid denaturation at room temperature. CYP71E1 is isolated in the low spin form. CYP71E1 catalyzes an unusual dehydration reaction of an oxime to the corresponding nitrile which subsequently is C-hydroxylated. The oxime forms a peculiar reverse Type I spectrum, whereas the nitrile forms a Type I spectrum. Several compounds which do not serve as substrates formed Type I substrate binding spectra with the two P450 enzymes. Copyright 1999 Academic Press.
机译:使用重组的重组酶和高粱微粒体对底物特异性和辅因子要求进行了表征,涉及到高粱双色(L.)Moench中生氰苷Dhurrin的生物合成中涉及的两种多功能细胞色素P450酶CYP79A1和CYP71E1。 CYP79A1具有很高的底物特异性,酪氨酸是唯一发现的底物。 CYP71E1对底物的要求不那么严格,并且可以有效地代谢芳族肟,而脂肪族肟则被缓慢代谢。 CYP79A1和CYP71E1都不催化一系列不同除草剂的代谢。因此,所报道的高粱对苯达松的抗性与CYP79A1或CYP71E1的存在无关。尽管NADH确实支持两种P450酶的整个催化循环,但NADPH却比NADH更好。当支持CYP71E1活性时,NADPH的Km和Vmax值为0.013 mM和111 nmol / mg蛋白/ s。对于NADH,相应值为0. 3 mM和42 nmol / mg蛋白质/ s。 CYP79A1是一种相当稳定的酶。相反,CYP71E1不稳定并且在室温下易于快速变性。 CYP71E1以低旋转形式分离。 CYP71E1催化肟发生不寻常的脱水反应,生成相应的腈,随后腈被C-羟基化。肟形成独特的I型反向光谱,而腈形成I型光谱。几种不作为底物的化合物与两种P450酶形成了I型底物结合光谱。版权所有1999,学术出版社。

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