首页> 外文期刊>Journal of Insect Physiology >Aedes aegypti juvenile hormone acid methyl transferase, the ultimate enzyme in the biosynthetic pathway of juvenile hormone III, exhibits substrate control.
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Aedes aegypti juvenile hormone acid methyl transferase, the ultimate enzyme in the biosynthetic pathway of juvenile hormone III, exhibits substrate control.

机译:埃及伊蚊幼体激素酸性甲基转移酶是幼体激素III生物合成途径中的终极酶,具有底物控制功能。

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摘要

We report on the cloning, sequencing, characterization, 3D modeling and docking of Aedes aegypti juvenile hormone acid methyl transferase (AeaJHAMT), the enzyme that converts juvenile hormone acid (JHA) into juvenile hormone (JH). Purified recombinant AeaJHAMT was extensively characterized for enzymatic activity and the Michaelis Menten kinetic parameters Km, Vmax, kcat (turn over number) and kcat/Km (catalytic efficiency) using JHA and its analogues as substrates. AeaJHAMT methylates JHA III 5-fold faster than farnesoic acid (FA). Significant differences in lower methyl transferase (MT) activities towards the cis/trans/trans, cis/trans/cis and the trans/cis/cis isomers of JHA I (1.32, 4.71 and 156-fold, respectively) indicate that substrate chirality is important for proper alignment at the catalytic cavity and for efficient methyl transfer by S-adenosyl methionine (SAM). Our 3D model shows a potential binding site below the main catalytic cavity for JHA analogues causing conformational change and steric hindrance in the transfer of the methyl group to JHA III. These, in silico, observations were corroborated by, in vitro, studies showing that several JHA analogues are potent inhibitors of AeaJHAMT. In vitro, and in vivo studies using [3H-methyl]SAM show that the enzyme is present and active throughout the adult life stage of A. aegypti. Tissue specific expressions of the JHAMT gene of A. aegypti (jmtA) transcript during the life cycle of A. aegypti show that AeaJHAMT is a constitutive enzyme and jmtA transcript is expressed in the corpora allata (CA), and the ovary before and after the blood meal. These results indicate that JH III can be synthesized from JHA III by the mosquito ovary, suggesting that ovarian JH III may play an important physiological role in ovarian development and reproduction. Incubating AeaJHAMT with highly pure synthetic substrates indicates that JHA III is the enzyme's preferred substrate, suggesting that AeaJHAMT is the ultimate enzyme in the biosynthetic pathway of JH III.
机译:我们报告了埃及伊蚊幼体激素酸性甲基转移酶(AeaJHAMT)的克隆,测序,表征,3D建模和对接,该酶将幼体激素酸(JHA)转换为幼体激素(JH)。纯化的重组AeaJHAMT的酶活性和Michaelis Menten动力学参数K m ,V max ,k cat (周转数)和以JHA及其类似物为底物的k cat / K m (催化效率)。 AeaJHAMT使JHA III甲基化的速度比法尼酸(FA)快5倍。较低的甲基转移酶(MT)活性对JHA I的顺式/反式/反式,顺式/反式/顺式和反式/顺式/顺式异构体的显着差异(分别为1.32、4.71和156倍)表明底物手性为对于在催化腔中正确对齐以及通过S-腺苷甲硫氨酸(SAM)进行有效的甲基转移非常重要。我们的3D模型显示了JHA类似物在主催化腔下方的潜在结合位点,在甲基转移至JHA III时引起构象变化和空间位阻。这些在计算机上的观察得到了体外研究的证实,该研究表明几种JHA类似物是AeaJHAMT的有效抑制剂。使用[ 3 H-甲基] SAM进行的体外和体内研究表明,该酶在埃及伊蚊的整个成年阶段均存在并具有活性。在埃及伊蚊的生命周期中,埃及伊蚊(jmtA)转录本的JHAMT基因的组织特异性表达表明AeaJHAMT是一种组成性酶,并且jmtA转录本在体集(CA)中以及卵巢前后的子房中表达。血粉。这些结果表明,JH III可以通过蚊子卵巢从JHA III合成,表明卵巢JH III可能在卵巢发育和繁殖中起重要的生理作用。将AeaJHAMT与高纯度的合成底物一起孵育表明JHA III是该酶的首选底物,这表明AeaJHAMT是JH III生物合成途径中的最终酶。

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