Literature DB >> 12479576

Alternative lipid mobilization: the insect shuttle system.

Dick J van der Horst1, Dennis van Hoof, Wil J A van Marrewijk, Kees W Rodenburg.   

Abstract

Lipid mobilization in long-distance flying insects has revealed a novel concept for lipid transport in the circulatory system during exercise. Similar to energy generation for sustained locomotion in mammals, the work accomplished by non-stop flight activity is powered by oxidation of free fatty acids (FFA) derived from endogenous reserves of triacylglycerol. The transport form of the lipid, however, is diacylglycerol (DAG), which is delivered to the flight muscles associated with lipoproteins. In the insect system, the multifunctional lipoprotein, high-density lipophorin (HDLp) is loaded with DAG while additionally, multiple copies of the exchangeable apolipoprotein, apoLp-III, associate with the expanding particle. As a result, lipid-enriched low-density lipophorin (LDLp) is formed. At the flight muscles, LDLp-carried DAG is hydrolyzed and FFA are imported into the muscle cells for energy generation. The depletion of DAG from LDLp results in the recovery of both HDLp and apoLp-III, HDLp, identified which are reutilized for another cycle of DAG transport. A receptor for as a novel member of the vertebrate low-density lipoprotein (LDL) receptor family, does not seem to be involved in the lipophorin shuttle mechanism operative during flight activity. In addition, endocytosis of HDLp mediated by the insect receptor does not seem to follow the classical mammalian LDL pathway. Many structural elements of the lipid mobilization system in insects are similar to those in mammals. Domain structures of apoLp-I and apoLp-II, the non-exchangeable apolipoprotein components of HDLp, are related to apoB 100. ApoLp-III is a bundle of five amphipathic alpha-helices that binds to a lipid surface very similar to the four-helix bundle of the N-terminal domain of human apoE. Despite these similarities, the functioning of the insect lipoprotein in energy transport during flight activity is intriguingly different, since the TAG-rich mammalian lipoproteins play no role as a carrier of mobilized lipids during exercise and besides, these lipoproteins are not functioning as a reusable shuttle for lipid transport. On the other hand, the deviant behavior of similar molecules in a different biological system may provide a useful alternative model for studying the molecular basis of processes related to human disorders and disease.

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Year:  2002        PMID: 12479576

Source DB:  PubMed          Journal:  Mol Cell Biochem        ISSN: 0300-8177            Impact factor:   3.396


  32 in total

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Authors:  V Narayanaswami; J Wang; D Schieve; C M Kay; R O Ryan
Journal:  Proc Natl Acad Sci U S A       Date:  1999-04-13       Impact factor: 11.205

Review 3.  Adipokinetic hormones of insect: release, signal transduction, and responses.

Authors:  D J Van der Horst; W J Van Marrewijk; J H Diederen
Journal:  Int Rev Cytol       Date:  2001

4.  Molecular characterization of the VLDL receptor homolog mediating binding of lipophorin in oocyte of the mosquito Aedes aegypti.

Authors:  H M Cheon; S J Seo; J Sun; T W Sappington; A S Raikhel
Journal:  Insect Biochem Mol Biol       Date:  2001-06-22       Impact factor: 4.714

5.  Molecular structure of an apolipoprotein determined at 2.5-A resolution.

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Journal:  Biochemistry       Date:  1991-01-22       Impact factor: 3.162

6.  The lipid-associated conformation of the low density lipoprotein receptor binding domain of human apolipoprotein E.

Authors:  C A Fisher; V Narayanaswami; R O Ryan
Journal:  J Biol Chem       Date:  2000-10-27       Impact factor: 5.157

Review 7.  Apolipoprotein E: structure-function relationships.

Authors:  K H Weisgraber
Journal:  Adv Protein Chem       Date:  1994

Review 8.  Fatty acid binding to plasma albumin.

Authors:  A A Spector
Journal:  J Lipid Res       Date:  1975-05       Impact factor: 5.922

9.  Three-dimensional structure of recombinant human muscle fatty acid-binding protein.

Authors:  G Zanotti; G Scapin; P Spadon; J H Veerkamp; J C Sacchettini
Journal:  J Biol Chem       Date:  1992-09-15       Impact factor: 5.157

10.  Primary structure and binding characteristics of locust and human muscle fatty-acid-binding proteins.

Authors:  R G Maatman; M Degano; H T Van Moerkerk; W J Van Marrewijk; D J Van der Horst; J C Sacchettini; J H Veerkamp
Journal:  Eur J Biochem       Date:  1994-04-15
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  30 in total

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4.  Monoacylglycerol and diacylglycerol acyltransferases and the synthesis of neutral glycerides in Manduca sexta.

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Journal:  Insect Biochem Mol Biol       Date:  2014-09-28       Impact factor: 4.714

5.  Apolipophorin III: lipopolysaccharide binding requires helix bundle opening.

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Journal:  Biochem Biophys Res Commun       Date:  2006-08-10       Impact factor: 3.575

6.  TGL-mediated lipolysis in Manduca sexta fat body: possible roles for lipoamide-dehydrogenase (LipDH) and high-density lipophorin (HDLp).

Authors:  Zengying Wu; Jose L Soulages; Bharat D Joshi; Stuart M Daniel; Zachary J Hager; Estela L Arrese
Journal:  Insect Biochem Mol Biol       Date:  2013-12-12       Impact factor: 4.714

7.  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 8.  The helix bundle: a reversible lipid binding motif.

Authors:  Vasanthy Narayanaswami; Robert S Kiss; Paul M M Weers
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9.  Acquisition of triacylglycerol transfer activity by microsomal triglyceride transfer protein during evolution.

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10.  Apolipophorin III lysine modification: Effect on structure and lipid binding.

Authors:  Lesley J Vasquez; Gezman E Abdullahi; Chung-Ping Leon Wan; Paul M M Weers
Journal:  Biochim Biophys Acta       Date:  2009-05-18
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