Phospholipase D family member 4, a transmembrane glycoprotein with no phospholipase D activity, expression in spleen and early postnatal microglia.

<h4>Background</h4>Phospholipase D (PLD) catalyzes conversion of phosphatidylcholine into choline and phosphatidic acid, leading to a variety of intracellular signal transduction events. Two classical PLDs, PLD1 and PLD2, contain phosphatidylinositide-binding PX and PH domains and two co...

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Main Authors: Fumio Yoshikawa, Yoshiko Banno, Yoshinori Otani, Yoshihide Yamaguchi, Yuko Nagakura-Takagi, Noriyuki Morita, Yumi Sato, Chihiro Saruta, Hirozumi Nishibe, Tetsushi Sadakata, Yo Shinoda, Kanehiro Hayashi, Yuriko Mishima, Hiroko Baba, Teiichi Furuichi
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-11-01
Series:PLoS ONE
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/21085684/pdf/?tool=EBI
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spelling doaj-6211fc39f972439486239cf247bf00a42021-03-04T02:14:43ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-11-01511e1393210.1371/journal.pone.0013932Phospholipase D family member 4, a transmembrane glycoprotein with no phospholipase D activity, expression in spleen and early postnatal microglia.Fumio YoshikawaYoshiko BannoYoshinori OtaniYoshihide YamaguchiYuko Nagakura-TakagiNoriyuki MoritaYumi SatoChihiro SarutaHirozumi NishibeTetsushi SadakataYo ShinodaKanehiro HayashiYuriko MishimaHiroko BabaTeiichi Furuichi<h4>Background</h4>Phospholipase D (PLD) catalyzes conversion of phosphatidylcholine into choline and phosphatidic acid, leading to a variety of intracellular signal transduction events. Two classical PLDs, PLD1 and PLD2, contain phosphatidylinositide-binding PX and PH domains and two conserved His-x-Lys-(x)(4)-Asp (HKD) motifs, which are critical for PLD activity. PLD4 officially belongs to the PLD family, because it possesses two HKD motifs. However, it lacks PX and PH domains and has a putative transmembrane domain instead. Nevertheless, little is known regarding expression, structure, and function of PLD4.<h4>Methodology/principal findings</h4>PLD4 was analyzed in terms of expression, structure, and function. Expression was analyzed in developing mouse brains and non-neuronal tissues using microarray, in situ hybridization, immunohistochemistry, and immunocytochemistry. Structure was evaluated using bioinformatics analysis of protein domains, biochemical analyses of transmembrane property, and enzymatic deglycosylation. PLD activity was examined by choline release and transphosphatidylation assays. Results demonstrated low to modest, but characteristic, PLD4 mRNA expression in a subset of cells preferentially localized around white matter regions, including the corpus callosum and cerebellar white matter, during the first postnatal week. These PLD4 mRNA-expressing cells were identified as Iba1-positive microglia. In non-neuronal tissues, PLD4 mRNA expression was widespread, but predominantly distributed in the spleen. Intense PLD4 expression was detected around the marginal zone of the splenic red pulp, and splenic PLD4 protein recovered from subcellular membrane fractions was highly N-glycosylated. PLD4 was heterologously expressed in cell lines and localized in the endoplasmic reticulum and Golgi apparatus. Moreover, heterologously expressed PLD4 proteins did not exhibit PLD enzymatic activity.<h4>Conclusions/significance</h4>Results showed that PLD4 is a non-PLD, HKD motif-carrying, transmembrane glycoprotein localized in the endoplasmic reticulum and Golgi apparatus. The spatiotemporally restricted expression patterns suggested that PLD4 might play a role in common function(s) among microglia during early postnatal brain development and splenic marginal zone cells.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/21085684/pdf/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Fumio Yoshikawa
Yoshiko Banno
Yoshinori Otani
Yoshihide Yamaguchi
Yuko Nagakura-Takagi
Noriyuki Morita
Yumi Sato
Chihiro Saruta
Hirozumi Nishibe
Tetsushi Sadakata
Yo Shinoda
Kanehiro Hayashi
Yuriko Mishima
Hiroko Baba
Teiichi Furuichi
spellingShingle Fumio Yoshikawa
Yoshiko Banno
Yoshinori Otani
Yoshihide Yamaguchi
Yuko Nagakura-Takagi
Noriyuki Morita
Yumi Sato
Chihiro Saruta
Hirozumi Nishibe
Tetsushi Sadakata
Yo Shinoda
Kanehiro Hayashi
Yuriko Mishima
Hiroko Baba
Teiichi Furuichi
Phospholipase D family member 4, a transmembrane glycoprotein with no phospholipase D activity, expression in spleen and early postnatal microglia.
PLoS ONE
author_facet Fumio Yoshikawa
Yoshiko Banno
Yoshinori Otani
Yoshihide Yamaguchi
Yuko Nagakura-Takagi
Noriyuki Morita
Yumi Sato
Chihiro Saruta
Hirozumi Nishibe
Tetsushi Sadakata
Yo Shinoda
Kanehiro Hayashi
Yuriko Mishima
Hiroko Baba
Teiichi Furuichi
author_sort Fumio Yoshikawa
title Phospholipase D family member 4, a transmembrane glycoprotein with no phospholipase D activity, expression in spleen and early postnatal microglia.
title_short Phospholipase D family member 4, a transmembrane glycoprotein with no phospholipase D activity, expression in spleen and early postnatal microglia.
title_full Phospholipase D family member 4, a transmembrane glycoprotein with no phospholipase D activity, expression in spleen and early postnatal microglia.
title_fullStr Phospholipase D family member 4, a transmembrane glycoprotein with no phospholipase D activity, expression in spleen and early postnatal microglia.
title_full_unstemmed Phospholipase D family member 4, a transmembrane glycoprotein with no phospholipase D activity, expression in spleen and early postnatal microglia.
title_sort phospholipase d family member 4, a transmembrane glycoprotein with no phospholipase d activity, expression in spleen and early postnatal microglia.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-11-01
description <h4>Background</h4>Phospholipase D (PLD) catalyzes conversion of phosphatidylcholine into choline and phosphatidic acid, leading to a variety of intracellular signal transduction events. Two classical PLDs, PLD1 and PLD2, contain phosphatidylinositide-binding PX and PH domains and two conserved His-x-Lys-(x)(4)-Asp (HKD) motifs, which are critical for PLD activity. PLD4 officially belongs to the PLD family, because it possesses two HKD motifs. However, it lacks PX and PH domains and has a putative transmembrane domain instead. Nevertheless, little is known regarding expression, structure, and function of PLD4.<h4>Methodology/principal findings</h4>PLD4 was analyzed in terms of expression, structure, and function. Expression was analyzed in developing mouse brains and non-neuronal tissues using microarray, in situ hybridization, immunohistochemistry, and immunocytochemistry. Structure was evaluated using bioinformatics analysis of protein domains, biochemical analyses of transmembrane property, and enzymatic deglycosylation. PLD activity was examined by choline release and transphosphatidylation assays. Results demonstrated low to modest, but characteristic, PLD4 mRNA expression in a subset of cells preferentially localized around white matter regions, including the corpus callosum and cerebellar white matter, during the first postnatal week. These PLD4 mRNA-expressing cells were identified as Iba1-positive microglia. In non-neuronal tissues, PLD4 mRNA expression was widespread, but predominantly distributed in the spleen. Intense PLD4 expression was detected around the marginal zone of the splenic red pulp, and splenic PLD4 protein recovered from subcellular membrane fractions was highly N-glycosylated. PLD4 was heterologously expressed in cell lines and localized in the endoplasmic reticulum and Golgi apparatus. Moreover, heterologously expressed PLD4 proteins did not exhibit PLD enzymatic activity.<h4>Conclusions/significance</h4>Results showed that PLD4 is a non-PLD, HKD motif-carrying, transmembrane glycoprotein localized in the endoplasmic reticulum and Golgi apparatus. The spatiotemporally restricted expression patterns suggested that PLD4 might play a role in common function(s) among microglia during early postnatal brain development and splenic marginal zone cells.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/21085684/pdf/?tool=EBI
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