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果蝇细胞色素P450 Cyp6a2中与杀虫剂抗性相关的点突变可实现滴滴涕代谢。

Point mutations associated with insecticide resistance in the Drosophila cytochrome P450 Cyp6a2 enable DDT metabolism.

作者信息

Amichot Marcel, Tarès Sophie, Brun-Barale Alexandra, Arthaud Laury, Bride Jean-Marc, Bergé Jean-Baptiste

机构信息

Unité Mixte de Recherche 1112, Institut National de la Recherche Agronomique, Sophia Antipolis, France.

出版信息

Eur J Biochem. 2004 Apr;271(7):1250-7. doi: 10.1111/j.1432-1033.2004.04025.x.

DOI:10.1111/j.1432-1033.2004.04025.x
PMID:15030474
Abstract

Three point mutations R335S, L336V and V476L, distinguish the sequence of a cytochrome P450 CYP6A2 variant assumed to be responsible for 1,1,1-trichloro-2,2-bis-(4'-chlorophenyl)ethane (DDT) resistance in the RDDT(R) strain of Drosophila melanogaster. To determine the impact of each mutation on the function of CYP6A2, the wild-type enzyme (CYP6A2wt) of Cyp6a2 was expressed in Escherichia coli as well as three variants carrying a single mutation, the double mutant CYP6A2vSV and the triple mutant CYP6A2vSVL. All CYP6A2 variants were less stable than the CYP6A2wt protein. Two activities enhanced in the RDDT(R) strain were measured with all recombinant proteins, namely testosterone hydroxylation and DDT metabolism. Testosterone was hydroxylated at the 2beta position with little quantitative variation among the variants. In contrast, metabolism of DDT was strongly affected by the mutations. The CYP6A2vSVL enzyme had an enhanced metabolism of DDT, producing dicofol, dichlorodiphenyldichloroethane and dichlorodiphenyl acetic acid. The apparent affinity of the enzymes CYP6A2wt and CYP6A2vSVL for DDT and testosterone was not significantly different as revealed by the type I difference spectra. Sequence alignments with CYP102A1 provided clues to the positions of the amino acids mutated in CYP6A2. These mutations were found spatially clustered in the vicinity of the distal end of helix I relative to the substrate recognition valley. Thus this area, including helix J, is important for the structure and activity of CYP6A2. Furthermore, we show here that point mutations in a cytochrome P450 can have a prominent role in insecticide resistance.

摘要

三个点突变R335S、L336V和V476L,区分了一种细胞色素P450 CYP6A2变体的序列,该变体被认为与黑腹果蝇RDDT(R)品系对1,1,1-三氯-2,2-双-(4'-氯苯基)乙烷(滴滴涕)的抗性有关。为了确定每个突变对CYP6A2功能的影响,Cyp6a2的野生型酶(CYP6A2wt)在大肠杆菌中表达,以及三个携带单个突变的变体、双突变体CYP6A2vSV和三突变体CYP6A2vSVL。所有CYP6A2变体都比CYP6A2wt蛋白稳定性差。用所有重组蛋白测量了RDDT(R)品系中增强的两种活性,即睾酮羟基化和滴滴涕代谢。睾酮在2β位被羟基化,各变体之间在定量上几乎没有差异。相比之下,滴滴涕的代谢受到突变的强烈影响。CYP6A2vSVL酶对滴滴涕的代谢增强,产生三氯杀螨醇、二氯二苯二氯乙烷和二氯二苯乙酸。I型差异光谱显示,CYP6A2wt和CYP6A2vSVL酶对滴滴涕和睾酮的表观亲和力没有显著差异。与CYP102A1的序列比对为CYP6A2中突变氨基酸的位置提供了线索。这些突变在空间上聚集在相对于底物识别谷的螺旋I远端附近。因此,包括螺旋J在内的该区域对CYP6A2的结构和活性很重要。此外,我们在此表明,细胞色素P450中的点突变在抗杀虫剂中可发挥重要作用。

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