PlexinA1 is crucial for the midline crossing of callosal axons during corpus callosum development in BALB/cAJ mice.

The corpus callosum (CC) is the biggest commissure that links cerebral hemispheres. Guidepost structures develop in the cortical midline during CC development and express axon guidance molecules that instruct neurons regarding the proper direction of axonal elongation toward and across the cortical...

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Main Authors: Md Mosharaf Hossain, Takamasa Tsuzuki, Kazuki Sakakibara, Fumitaka Imaizumi, Akihiro Ikegaya, Mami Inagaki, Ikuko Takahashi, Takuji Ito, Hyota Takamatsu, Atsushi Kumanogoh, Takayuki Negishi, Kazunori Yukawa
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0221440
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spelling doaj-6a77c595f605484899bf696ac67380272021-03-03T20:32:09ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01148e022144010.1371/journal.pone.0221440PlexinA1 is crucial for the midline crossing of callosal axons during corpus callosum development in BALB/cAJ mice.Md Mosharaf HossainTakamasa TsuzukiKazuki SakakibaraFumitaka ImaizumiAkihiro IkegayaMami InagakiIkuko TakahashiTakuji ItoHyota TakamatsuAtsushi KumanogohTakayuki NegishiKazunori YukawaThe corpus callosum (CC) is the biggest commissure that links cerebral hemispheres. Guidepost structures develop in the cortical midline during CC development and express axon guidance molecules that instruct neurons regarding the proper direction of axonal elongation toward and across the cortical midline. Neuropilin-1 (Npn1), a high affinity receptor for class 3 semaphorins (Sema3s) localized on cingulate pioneering axons, plays a crucial role in axon guidance to the midline through interactions with Sema3s. However, it remains unclear which type of Plexin is a component of Sema3 holoreceptors with Npn1 during the guidance of cingulate pioneering axons. To address the role of PlexinA1 in CC development, we examined with immunohistochemistry the localization of PlexinA1, Npn1, and Sema3s using embryonic brains from wild-type (WT) and PlexinA1-deficient (PlexinA1 knock-out (KO)) mice with a BALB/cAJ background. The immunohistochemistry confirmed the expression of PlexinA1 in callosal axons derived from the cingulate and neocortex of the WT mice on embryonic day 17.5 (E17.5) but not in the PlexinA1 KO mice. To examine the role of PlexinA1 in the navigation of callosal axons, the extension of callosal axons toward and across the midline was traced in brains of WT and PlexinA1 KO mice at E17.5. As a result, callosal axons in the PlexinA1 KO brains had a significantly lower incidence of midline crossing at E17.5 compared with the WT brains. To further examine the role of PlexinA1 in CC development, the CC phenotype was examined in PlexinA1 KO mice at postnatal day 0.5 (P0.5). Most of the PlexinA1 KO mice at P0.5 showed agenesis of the CC. These results indicate the crucial involvement of PlexinA1 in the midline crossing of callosal axons during CC development in BALB/cAJ mice.https://doi.org/10.1371/journal.pone.0221440
collection DOAJ
language English
format Article
sources DOAJ
author Md Mosharaf Hossain
Takamasa Tsuzuki
Kazuki Sakakibara
Fumitaka Imaizumi
Akihiro Ikegaya
Mami Inagaki
Ikuko Takahashi
Takuji Ito
Hyota Takamatsu
Atsushi Kumanogoh
Takayuki Negishi
Kazunori Yukawa
spellingShingle Md Mosharaf Hossain
Takamasa Tsuzuki
Kazuki Sakakibara
Fumitaka Imaizumi
Akihiro Ikegaya
Mami Inagaki
Ikuko Takahashi
Takuji Ito
Hyota Takamatsu
Atsushi Kumanogoh
Takayuki Negishi
Kazunori Yukawa
PlexinA1 is crucial for the midline crossing of callosal axons during corpus callosum development in BALB/cAJ mice.
PLoS ONE
author_facet Md Mosharaf Hossain
Takamasa Tsuzuki
Kazuki Sakakibara
Fumitaka Imaizumi
Akihiro Ikegaya
Mami Inagaki
Ikuko Takahashi
Takuji Ito
Hyota Takamatsu
Atsushi Kumanogoh
Takayuki Negishi
Kazunori Yukawa
author_sort Md Mosharaf Hossain
title PlexinA1 is crucial for the midline crossing of callosal axons during corpus callosum development in BALB/cAJ mice.
title_short PlexinA1 is crucial for the midline crossing of callosal axons during corpus callosum development in BALB/cAJ mice.
title_full PlexinA1 is crucial for the midline crossing of callosal axons during corpus callosum development in BALB/cAJ mice.
title_fullStr PlexinA1 is crucial for the midline crossing of callosal axons during corpus callosum development in BALB/cAJ mice.
title_full_unstemmed PlexinA1 is crucial for the midline crossing of callosal axons during corpus callosum development in BALB/cAJ mice.
title_sort plexina1 is crucial for the midline crossing of callosal axons during corpus callosum development in balb/caj mice.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description The corpus callosum (CC) is the biggest commissure that links cerebral hemispheres. Guidepost structures develop in the cortical midline during CC development and express axon guidance molecules that instruct neurons regarding the proper direction of axonal elongation toward and across the cortical midline. Neuropilin-1 (Npn1), a high affinity receptor for class 3 semaphorins (Sema3s) localized on cingulate pioneering axons, plays a crucial role in axon guidance to the midline through interactions with Sema3s. However, it remains unclear which type of Plexin is a component of Sema3 holoreceptors with Npn1 during the guidance of cingulate pioneering axons. To address the role of PlexinA1 in CC development, we examined with immunohistochemistry the localization of PlexinA1, Npn1, and Sema3s using embryonic brains from wild-type (WT) and PlexinA1-deficient (PlexinA1 knock-out (KO)) mice with a BALB/cAJ background. The immunohistochemistry confirmed the expression of PlexinA1 in callosal axons derived from the cingulate and neocortex of the WT mice on embryonic day 17.5 (E17.5) but not in the PlexinA1 KO mice. To examine the role of PlexinA1 in the navigation of callosal axons, the extension of callosal axons toward and across the midline was traced in brains of WT and PlexinA1 KO mice at E17.5. As a result, callosal axons in the PlexinA1 KO brains had a significantly lower incidence of midline crossing at E17.5 compared with the WT brains. To further examine the role of PlexinA1 in CC development, the CC phenotype was examined in PlexinA1 KO mice at postnatal day 0.5 (P0.5). Most of the PlexinA1 KO mice at P0.5 showed agenesis of the CC. These results indicate the crucial involvement of PlexinA1 in the midline crossing of callosal axons during CC development in BALB/cAJ mice.
url https://doi.org/10.1371/journal.pone.0221440
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