Literature DB >> 12909364

Characterization of Drosophila palmitoyl-protein thioesterase 1.

Robert L Glaser1, Anthony J Hickey, Heather L Chotkowski, Quynh Chu-LaGraff.   

Abstract

Batten disease or neuronal ceroid lipofuscinoses (NCL) are a group of genetic neurodegenerative diseases that primarily afflict infants and children and are characterized by progressive loss of brain functions caused by the death of central nervous system (CNS) neurons. The most severe form of the disease is infantile NCL (INCL). INCL is caused by mutations in the palmitoyl-protein thioesterase 1 (PPT1) gene, which encodes a palmitoyl-protein thioesterase 1 enzyme that cleaves long-chain fatty acids from S-acylated proteins within the lysosome. How the loss of this activity causes the death of CNS neurons is not known. A PPT1 homolog and palmitoyl-protein thioesterase 1 enzyme activity were characterized in Drosophila melanogaster as an initial step in developing Drosophila as a model system for studying the etiology of INCL. Predicted gene CG12108 in region 8A2 of the X chromosome is 55% identical and 72% similar to human PPT1 and contains conserved catalytic residues and sites of glycosylation. Northern-blot hybridizations revealed a major 1.5 kb CG12108 transcript in unfertilized eggs, embryos, larvae, pupae, adult head and thorax, ovary, testis, and S2 tissue culture cells, as well as several minor mRNA species in some tissues. Levels of the 1.5 kb transcript were fairly uniform among tissues except in testis, where the transcript was enriched 5-fold. The same tissues also contained palmitoyl-protein thioesterase 1 enzyme activity measured using the fluorometric substrate 4-methylumbelliferyl-6-thiopalmitoyl-beta-D-glucoside. Enzyme activity was highest in testis and varied among the other tissues to a greater extent than did CG12108 message, suggesting that CG12108 is subjected to post-transcriptional regulation. Finally, flies homozygous for a deletion that removes CG12108 and three unrelated neighboring genes had less than 3% of wildtype levels of enzyme activity, consistent with CG12108 encoding functional palmitoyl-protein thioesterase 1 activity and being the fly ortholog of human PPT1. CG12108 has been appropriately renamed Ppt1.

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Year:  2003        PMID: 12909364     DOI: 10.1016/s0378-1119(03)00623-1

Source DB:  PubMed          Journal:  Gene        ISSN: 0378-1119            Impact factor:   3.688


  9 in total

1.  Autophagy-dependent rhodopsin degradation prevents retinal degeneration in Drosophila.

Authors:  Ryosuke Midorikawa; Miki Yamamoto-Hino; Wakae Awano; Yoshimi Hinohara; Emiko Suzuki; Ryu Ueda; Satoshi Goto
Journal:  J Neurosci       Date:  2010-08-11       Impact factor: 6.167

2.  Palmitoyl-protein thioesterase 1 deficiency in Drosophila melanogaster causes accumulation of abnormal storage material and reduced life span.

Authors:  Anthony J Hickey; Heather L Chotkowski; Navjot Singh; Jeffrey G Ault; Christopher A Korey; Marcy E MacDonald; Robert L Glaser
Journal:  Genetics       Date:  2006-02-01       Impact factor: 4.562

3.  The Drosophila protein palmitoylome: characterizing palmitoyl-thioesterases and DHHC palmitoyl-transferases.

Authors:  Barbra A Bannan; Jamie Van Etten; John A Kohler; Yui Tsoi; Nicole M Hansen; Stacey Sigmon; Elizabeth Fowler; Haley Buff; Tiffany S Williams; Jeffrey G Ault; Robert L Glaser; Christopher A Korey
Journal:  Fly (Austin)       Date:  2008 Jul-Aug       Impact factor: 2.160

4.  The Batten disease Palmitoyl Protein Thioesterase 1 gene regulates neural specification and axon connectivity during Drosophila embryonic development.

Authors:  Quynh Chu-LaGraff; Cassandra Blanchette; Patrick O'Hern; Cassandra Denefrio
Journal:  PLoS One       Date:  2010-12-22       Impact factor: 3.240

5.  Correlated duplications and losses in the evolution of palmitoylation writer and eraser families.

Authors:  Stijn Wittouck; Vera van Noort
Journal:  BMC Evol Biol       Date:  2017-03-20       Impact factor: 3.260

6.  Evaluation of linkage disequilibrium, population structure, and genetic diversity in the U.S. peanut mini core collection.

Authors:  Paul I Otyama; Andrew Wilkey; Roshan Kulkarni; Teshale Assefa; Ye Chu; Josh Clevenger; Dan J O'Connor; Graeme C Wright; Stanley W Dezern; Gregory E MacDonald; Noelle L Anglin; Ethalinda K S Cannon; Peggy Ozias-Akins; Steven B Cannon
Journal:  BMC Genomics       Date:  2019-06-11       Impact factor: 3.969

7.  Human INCL fibroblasts display abnormal mitochondrial and lysosomal networks and heightened susceptibility to ROS-induced cell death.

Authors:  Bailey Balouch; Halle Nagorsky; Truc Pham; James Thai LaGraff; Quynh Chu-LaGraff
Journal:  PLoS One       Date:  2021-02-09       Impact factor: 3.240

8.  An over-expression system for characterizing Ppt1 function in Drosophila.

Authors:  Christopher A Korey; Marcy E MacDonald
Journal:  BMC Neurosci       Date:  2003-11-20       Impact factor: 3.288

Review 9.  Exploiting the Potential of Drosophila Models in Lysosomal Storage Disorders: Pathological Mechanisms and Drug Discovery.

Authors:  Laura Rigon; Concetta De Filippis; Barbara Napoli; Rosella Tomanin; Genny Orso
Journal:  Biomedicines       Date:  2021-03-07
  9 in total

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