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Expression and characterization of the PEBP homolog genes from Drosophila

Identifieur interne : 007E74 ( Main/Exploration ); précédent : 007E73; suivant : 007E75

Expression and characterization of the PEBP homolog genes from Drosophila

Auteurs : Gilles Rautureau [France, Australie] ; Laurence Jouvensal [France] ; Françoise Vovelle [France] ; Françoise Schoentgen [France] ; Daniel Locker [France] ; Martine Decoville [France]

Source :

RBID : ISTEX:3783C340A488E0338AC4E32CA0BA18994DE4FD3A

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English descriptors

Abstract

The phosphatidylethanolamine binding proteins (PEBPs) family is evolutionarily conserved and involved in different physiological phenomena. PEBPs were found in many species from bacteria to mammals. Despite numerous studies, PEBPs' biological function and mode of action remain elusive. Based on sequence homology, seven PEBP genes were detected in the Drosophila genome. Only one of them, the odorant binding protein (OBP), has been characterized. To date nothing is known concerning the expression pattern and biological roles of the six other PEBP genes. By RT‐PCR and Western blot analysis, we examined expression of the PEBPs in different tissues and embryos. The 6 PEBPs were differentially expressed. Only one, CG10298, is specific of only one tissue: the testis. Additionally, by comparing in wild type and male‐sterile mutants we show that CG10298 is present only during spermatid differentiation. Furthermore, by comparing structural parameters of the six PEBP proteins with those of human PEBP‐1, we have established that PEBP CG10298 is most closely related to human PEBP. © 2009 Wiley Periodicals, Inc.

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DOI: 10.1002/arch.20300


Affiliations:


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<term>Adult heads</term>
<term>Adult testes</term>
<term>Adult tissues</term>
<term>Archives</term>
<term>Biochemistry</term>
<term>Biological function</term>
<term>Biophysique moleculaire</term>
<term>Bovine brain</term>
<term>Bovine brain cytosol</term>
<term>Complete agreement</term>
<term>Cytosolic protein</term>
<term>Different paralogues</term>
<term>Different pebps</term>
<term>Different tissues</term>
<term>Differential expression pattern</term>
<term>Drosophila</term>
<term>Drosophila genome</term>
<term>Drosophila melanogaster</term>
<term>Drosophila pebps</term>
<term>Embryo</term>
<term>Escherichia coli</term>
<term>Expression pattern</term>
<term>Expression vector</term>
<term>Higher identity scores</term>
<term>Human pebp</term>
<term>Hydrophobic cluster analysis</term>
<term>Hydrophobic clusters</term>
<term>Imaginal discs</term>
<term>Immune response</term>
<term>Immunolocalisation experiment</term>
<term>Insect biochemistry</term>
<term>Jolles</term>
<term>June</term>
<term>Kinase</term>
<term>Kinase inhibitor protein</term>
<term>Larva</term>
<term>Larval tissues</term>
<term>Late spermatids</term>
<term>Late spermatogenesis</term>
<term>Malpighi tubules</term>
<term>Melanogaster</term>
<term>Mutant</term>
<term>Mutant testes</term>
<term>Numerous tissues</term>
<term>Nurse cells</term>
<term>Other pebp genes</term>
<term>Ovarian chambers</term>
<term>Ovary</term>
<term>Pebp</term>
<term>Pebp family</term>
<term>Pebp gene</term>
<term>Pebp genes</term>
<term>Pebp proteins</term>
<term>Pebps</term>
<term>Phosphatidylethanolamine</term>
<term>Phosphatidylethanolamine binding protein</term>
<term>Phosphatidylethanolamine binding proteins</term>
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<term>Physiology drosophila expression pattern</term>
<term>Primer</term>
<term>Protein</term>
<term>Protein expression pattern</term>
<term>Proteomic analysis</term>
<term>Restriction site</term>
<term>Ribosomal protein</term>
<term>Room temperature</term>
<term>Salivary glands</term>
<term>Same organism</term>
<term>Schoentgen</term>
<term>Secondary antibody</term>
<term>Secondary structure elements</term>
<term>Secondary structures</term>
<term>Sequence alignment</term>
<term>Sequence analysis</term>
<term>Sequence homology</term>
<term>Several pebps</term>
<term>Sperm decapacitation factor receptor</term>
<term>Spermatid</term>
<term>Spermatid differentiation</term>
<term>Spermatogenesis</term>
<term>Testis</term>
<term>Total proteins</term>
<term>Various adult tissues</term>
<term>Western blot</term>
<term>Western experiments</term>
<term>Wild type</term>
<term>Wiley periodicals</term>
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<term>Accessory glands</term>
<term>Adult heads</term>
<term>Adult testes</term>
<term>Adult tissues</term>
<term>Archives</term>
<term>Biochemistry</term>
<term>Biological function</term>
<term>Biophysique moleculaire</term>
<term>Bovine brain</term>
<term>Bovine brain cytosol</term>
<term>Complete agreement</term>
<term>Cytosolic protein</term>
<term>Different paralogues</term>
<term>Different pebps</term>
<term>Different tissues</term>
<term>Differential expression pattern</term>
<term>Drosophila</term>
<term>Drosophila genome</term>
<term>Drosophila melanogaster</term>
<term>Drosophila pebps</term>
<term>Embryo</term>
<term>Escherichia coli</term>
<term>Expression pattern</term>
<term>Expression vector</term>
<term>Higher identity scores</term>
<term>Human pebp</term>
<term>Hydrophobic cluster analysis</term>
<term>Hydrophobic clusters</term>
<term>Imaginal discs</term>
<term>Immune response</term>
<term>Immunolocalisation experiment</term>
<term>Insect biochemistry</term>
<term>Jolles</term>
<term>June</term>
<term>Kinase</term>
<term>Kinase inhibitor protein</term>
<term>Larva</term>
<term>Larval tissues</term>
<term>Late spermatids</term>
<term>Late spermatogenesis</term>
<term>Malpighi tubules</term>
<term>Melanogaster</term>
<term>Mutant</term>
<term>Mutant testes</term>
<term>Numerous tissues</term>
<term>Nurse cells</term>
<term>Other pebp genes</term>
<term>Ovarian chambers</term>
<term>Ovary</term>
<term>Pebp</term>
<term>Pebp family</term>
<term>Pebp gene</term>
<term>Pebp genes</term>
<term>Pebp proteins</term>
<term>Pebps</term>
<term>Phosphatidylethanolamine</term>
<term>Phosphatidylethanolamine binding protein</term>
<term>Phosphatidylethanolamine binding proteins</term>
<term>Physiology</term>
<term>Physiology drosophila expression pattern</term>
<term>Primer</term>
<term>Protein</term>
<term>Protein expression pattern</term>
<term>Proteomic analysis</term>
<term>Restriction site</term>
<term>Ribosomal protein</term>
<term>Room temperature</term>
<term>Salivary glands</term>
<term>Same organism</term>
<term>Schoentgen</term>
<term>Secondary antibody</term>
<term>Secondary structure elements</term>
<term>Secondary structures</term>
<term>Sequence alignment</term>
<term>Sequence analysis</term>
<term>Sequence homology</term>
<term>Several pebps</term>
<term>Sperm decapacitation factor receptor</term>
<term>Spermatid</term>
<term>Spermatid differentiation</term>
<term>Spermatogenesis</term>
<term>Testis</term>
<term>Total proteins</term>
<term>Various adult tissues</term>
<term>Western blot</term>
<term>Western experiments</term>
<term>Wild type</term>
<term>Wiley periodicals</term>
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<front>
<div type="abstract" xml:lang="en">The phosphatidylethanolamine binding proteins (PEBPs) family is evolutionarily conserved and involved in different physiological phenomena. PEBPs were found in many species from bacteria to mammals. Despite numerous studies, PEBPs' biological function and mode of action remain elusive. Based on sequence homology, seven PEBP genes were detected in the Drosophila genome. Only one of them, the odorant binding protein (OBP), has been characterized. To date nothing is known concerning the expression pattern and biological roles of the six other PEBP genes. By RT‐PCR and Western blot analysis, we examined expression of the PEBPs in different tissues and embryos. The 6 PEBPs were differentially expressed. Only one, CG10298, is specific of only one tissue: the testis. Additionally, by comparing in wild type and male‐sterile mutants we show that CG10298 is present only during spermatid differentiation. Furthermore, by comparing structural parameters of the six PEBP proteins with those of human PEBP‐1, we have established that PEBP CG10298 is most closely related to human PEBP. © 2009 Wiley Periodicals, Inc.</div>
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