Literature DB >> 24657668

Aedes aegypti juvenile hormone acid methyl transferase, the ultimate enzyme in the biosynthetic pathway of juvenile hormone III, exhibits substrate control.

Evelien Van Ekert1, Kevin Heylen2, Pierre Rougé3, Charles A Powell1, Robert G Shatters4, Guy Smagghe5, Dov Borovsky6.   

Abstract

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, k(cat) (turn over number) and k(cat)/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 [(3)H-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.
Copyright © 2014 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  3D Modeling; Aedes aegypti; Corpora allata; Gene expression; Juvenile hormone methyltransferase; Ovary

Mesh:

Substances:

Year:  2014        PMID: 24657668     DOI: 10.1016/j.jinsphys.2014.03.001

Source DB:  PubMed          Journal:  J Insect Physiol        ISSN: 0022-1910            Impact factor:   2.354


  5 in total

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Authors:  Evelien Van Ekert; Robert G Shatters; Pierre Rougé; Charles A Powell; Guy Smagghe; Dov Borovsky
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Authors:  Aftab Raza Jarwar; Kun Hao; Ellyn Valery Bitume; Hidayat Ullah; Dongnan Cui; Xiangqun Nong; Guangjun Wang; Xiongbing Tu; Zehua Zhang
Journal:  G3 (Bethesda)       Date:  2019-10-07       Impact factor: 3.154

5.  Cloning and Characterization of Drosophila melanogaster Juvenile Hormone Epoxide Hydrolases (JHEH) and Their Promoters.

Authors:  Dov Borovsky; Hilde Breyssens; Esther Buytaert; Tom Peeters; Carole Laroye; Karolien Stoffels; Pierre Rougé
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  5 in total

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