Literature DB >> 15857759

Chitin synthase genes in Manduca sexta: characterization of a gut-specific transcript and differential tissue expression of alternately spliced mRNAs during development.

David G Hogenkamp1, Yasuyuki Arakane, Lars Zimoch, Hans Merzendorfer, Karl J Kramer, Richard W Beeman, Michael R Kanost, Charles A Specht, Subbaratnam Muthukrishnan.   

Abstract

Chitin, the linear homopolymer of beta-1,4-linked N-acetylglucosamine, is produced by the enzyme chitin synthase (CHS). In general, this insoluble polysaccharide is found in two major extracellular structures in insects, the cuticle that overlays the epidermis and the peritrophic membrane (PM) that lines the midgut. Based on amino acid sequence similarities, insect CHSs are divided into two classes, A and B, and to date no more than two CHS genes have been identified in any single insect species. In species where both CHSs have been identified, one class A CHS and one class B CHS are always present. This finding suggests that these two genes may encode enzymes that synthesize chitin in different epithelial tissues. In our laboratory, we previously characterized transcripts for a class A CHS gene (MsCHS1) from the tobacco hornworm, Manduca sexta. We observed the expression of this gene in the larval epidermis, suggesting that the encoded enzyme functions to synthesize cuticular chitin. In this paper, we characterize a second chitin synthase gene (MsCHS2) belonging to class B and its cDNA from Manduca and show that it is expressed only in the midgut. This cDNA contains an open reading frame of 4575 nucleotides, which encodes a conceptual protein that is 1524 amino acids in length and is predicted to contain 16 transmembrane spans. Northern blot analysis of RNA isolated from anterior, medial, and posterior sections of the midgut from feeding larvae indicate that MsCHS2 is primarily expressed in the anterior midgut, with transcript levels tapering off in the medial and posterior midgut. Analysis of the MsCHS2 gene sequence indicates the absence of an alternate exon in contrast to the MsCHS1 gene, which yields two transcripts, MsCHS1a and MsCHS1b. RT-PCR analysis of the differential expression of these alternately spliced transcripts reveals that both splice variants are present in the epidermis. However, the ratio of the two alternately spliced transcripts varies during development, with MsCHS1a being generally more predominant. Southern blot analysis using a probe specific for CHS indicated that Manduca has only two CHS genes, akin to other insect species. Results from an analysis of expression of both genes in different tissues and developmental times indicate that the MsCHS1 enzyme is used for the synthesis of chitin in the cuticle and tracheae, whereas MsCHS2 is utilized exclusively for the synthesis of PM-associated chitin in the midgut.

Entities:  

Mesh:

Substances:

Year:  2005        PMID: 15857759     DOI: 10.1016/j.ibmb.2005.01.016

Source DB:  PubMed          Journal:  Insect Biochem Mol Biol        ISSN: 0965-1748            Impact factor:   4.714


  24 in total

1.  Identification and characterization of two chitin synthase genes in African malaria mosquito, Anopheles gambiae.

Authors:  Xin Zhang; Jianzhen Zhang; Yoonseong Park; Kun Yan Zhu
Journal:  Insect Biochem Mol Biol       Date:  2012-06-07       Impact factor: 4.714

2.  Cloning and sequence analysis of chitin synthase gene fragments of Demodex mites.

Authors:  Ya-e Zhao; Zheng-hang Wang; Yang Xu; Ji-ru Xu; Wen-yan Liu; Meng Wei; Chu-ying Wang
Journal:  J Zhejiang Univ Sci B       Date:  2012-10       Impact factor: 3.066

3.  Insect Cuticular Chitin Contributes to Form and Function.

Authors:  Subbaratnam Muthukrishnan; Seulgi Mun; Mi Y Noh; Erika R Geisbrecht; Yasuyuki Arakane
Journal:  Curr Pharm Des       Date:  2020       Impact factor: 3.116

4.  Multifaceted biological insights from a draft genome sequence of the tobacco hornworm moth, Manduca sexta.

Authors:  Michael R Kanost; Estela L Arrese; Xiaolong Cao; Yun-Ru Chen; Sanjay Chellapilla; Marian R Goldsmith; Ewald Grosse-Wilde; David G Heckel; Nicolae Herndon; Haobo Jiang; Alexie Papanicolaou; Jiaxin Qu; Jose L Soulages; Heiko Vogel; James Walters; Robert M Waterhouse; Seung-Joon Ahn; Francisca C Almeida; Chunju An; Peshtewani Aqrawi; Anne Bretschneider; William B Bryant; Sascha Bucks; Hsu Chao; Germain Chevignon; Jayne M Christen; David F Clarke; Neal T Dittmer; Laura C F Ferguson; Spyridoula Garavelou; Karl H J Gordon; Ramesh T Gunaratna; Yi Han; Frank Hauser; Yan He; Hanna Heidel-Fischer; Ariana Hirsh; Yingxia Hu; Hongbo Jiang; Divya Kalra; Christian Klinner; Christopher König; Christie Kovar; Ashley R Kroll; Suyog S Kuwar; Sandy L Lee; Rüdiger Lehman; Kai Li; Zhaofei Li; Hanquan Liang; Shanna Lovelace; Zhiqiang Lu; Jennifer H Mansfield; Kyle J McCulloch; Tittu Mathew; Brian Morton; Donna M Muzny; David Neunemann; Fiona Ongeri; Yannick Pauchet; Ling-Ling Pu; Ioannis Pyrousis; Xiang-Jun Rao; Amanda Redding; Charles Roesel; Alejandro Sanchez-Gracia; Sarah Schaack; Aditi Shukla; Guillaume Tetreau; Yang Wang; Guang-Hua Xiong; Walther Traut; Tom K Walsh; Kim C Worley; Di Wu; Wenbi Wu; Yuan-Qing Wu; Xiufeng Zhang; Zhen Zou; Hannah Zucker; Adriana D Briscoe; Thorsten Burmester; Rollie J Clem; René Feyereisen; Cornelis J P Grimmelikhuijzen; Stavros J Hamodrakas; Bill S Hansson; Elisabeth Huguet; Lars S Jermiin; Que Lan; Herman K Lehman; Marce Lorenzen; Hans Merzendorfer; Ioannis Michalopoulos; David B Morton; Subbaratnam Muthukrishnan; John G Oakeshott; Will Palmer; Yoonseong Park; A Lorena Passarelli; Julio Rozas; Lawrence M Schwartz; Wendy Smith; Agnes Southgate; Andreas Vilcinskas; Richard Vogt; Ping Wang; John Werren; Xiao-Qiang Yu; Jing-Jiang Zhou; Susan J Brown; Steven E Scherer; Stephen Richards; Gary W Blissard
Journal:  Insect Biochem Mol Biol       Date:  2016-08-12       Impact factor: 4.714

Review 5.  Insect chitin synthases: a review.

Authors:  Hans Merzendorfer
Journal:  J Comp Physiol B       Date:  2005-08-02       Impact factor: 2.200

6.  First report on chitinous holdfast in sponges (Porifera).

Authors:  Hermann Ehrlich; Oksana V Kaluzhnaya; Mikhail V Tsurkan; Alexander Ereskovsky; Konstantin R Tabachnick; Micha Ilan; Allison Stelling; Roberta Galli; Olga V Petrova; Serguei V Nekipelov; Victor N Sivkov; Denis Vyalikh; René Born; Thomas Behm; Andre Ehrlich; Lubov I Chernogor; Sergei Belikov; Dorte Janussen; Vasilii V Bazhenov; Gert Wörheide
Journal:  Proc Biol Sci       Date:  2013-05-15       Impact factor: 5.349

7.  Benzoylurea resistance in western flower thrips Frankliniella occidentalis (Thysanoptera: Thripidae): the presence of a point mutation in chitin synthase 1.

Authors:  Youhei Suzuki; Takahiro Shiotsuki; Akiya Jouraku; Ken Miura; Chieka Minakuchi
Journal:  J Pestic Sci       Date:  2017-08-20       Impact factor: 1.519

8.  Comparative Analysis of the Intermolt and Postmolt Hepatopancreas Transcriptomes Provides Insight into the Mechanisms of Procambarus clarkii Molting Process.

Authors:  Shengyan Su; Brian Pelekelo Munganga; Can Tian; Jianlin Li; Fan Yu; Hongxia Li; Meiyao Wang; Xinjin He; Yongkai Tang
Journal:  Life (Basel)       Date:  2021-05-25

9.  Characterization of a chitin synthase encoding gene and effect of diflubenzuron in soybean aphid, Aphis glycines.

Authors:  Raman Bansal; M A Rouf Mian; Omprakash Mittapalli; Andy P Michel
Journal:  Int J Biol Sci       Date:  2012-10-25       Impact factor: 6.580

10.  Identification, mRNA expression, and functional analysis of chitin synthase 1 gene and its two alternative splicing variants in oriental fruit fly, Bactrocera dorsalis.

Authors:  Wen-Jia Yang; Kang-Kang Xu; Lin Cong; Jin-Jun Wang
Journal:  Int J Biol Sci       Date:  2013-04-05       Impact factor: 6.580

View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.