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A transducible nuclear/nucleolar protein, mLLP, regulates neuronal morphogenesis and synaptic transmission

Cell-permeable proteins are emerging as unconventional regulators of signal transduction and providing a potential for therapeutic applications. However, only a few of them are identified and studied in detail. We identify a novel cell-permeable protein, mouse LLP homolog (mLLP), and uncover its rol...

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Autores principales: Yu, Nam-Kyung, Kim, Hyoung F., Shim, Jaehoon, Kim, Somi, Kim, Dae Won, Kwak, Chuljung, Sim, Su-Eon, Choi, Jun-Hyeok, Ahn, Seohee, Yoo, Juyoun, Choi, Sun-Lim, Jang, Deok-Jin, Lim, Chae-Seok, Lee, Yong-Seok, Kang, Chulhun, Choi, Soo Young, Kaang, Bong-Kiun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4790632/
https://www.ncbi.nlm.nih.gov/pubmed/26961175
http://dx.doi.org/10.1038/srep22892
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author Yu, Nam-Kyung
Kim, Hyoung F.
Shim, Jaehoon
Kim, Somi
Kim, Dae Won
Kwak, Chuljung
Sim, Su-Eon
Choi, Jun-Hyeok
Ahn, Seohee
Yoo, Juyoun
Choi, Sun-Lim
Jang, Deok-Jin
Lim, Chae-Seok
Lee, Yong-Seok
Kang, Chulhun
Choi, Soo Young
Kaang, Bong-Kiun
author_facet Yu, Nam-Kyung
Kim, Hyoung F.
Shim, Jaehoon
Kim, Somi
Kim, Dae Won
Kwak, Chuljung
Sim, Su-Eon
Choi, Jun-Hyeok
Ahn, Seohee
Yoo, Juyoun
Choi, Sun-Lim
Jang, Deok-Jin
Lim, Chae-Seok
Lee, Yong-Seok
Kang, Chulhun
Choi, Soo Young
Kaang, Bong-Kiun
author_sort Yu, Nam-Kyung
collection PubMed
description Cell-permeable proteins are emerging as unconventional regulators of signal transduction and providing a potential for therapeutic applications. However, only a few of them are identified and studied in detail. We identify a novel cell-permeable protein, mouse LLP homolog (mLLP), and uncover its roles in regulating neural development. We found that mLLP is strongly expressed in developing nervous system and that mLLP knockdown or overexpression during maturation of cultured neurons affected the neuronal growth and synaptic transmission. Interestingly, extracellular addition of mLLP protein enhanced dendritic arborization, demonstrating the non-cell-autonomous effect of mLLP. Moreover, mLLP interacts with CCCTC-binding factor (CTCF) as well as transcriptional machineries and modulates gene expression involved in neuronal growth. Together, these results illustrate the characteristics and roles of previously unknown cell-permeable protein mLLP in modulating neural development.
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spelling pubmed-47906322016-03-16 A transducible nuclear/nucleolar protein, mLLP, regulates neuronal morphogenesis and synaptic transmission Yu, Nam-Kyung Kim, Hyoung F. Shim, Jaehoon Kim, Somi Kim, Dae Won Kwak, Chuljung Sim, Su-Eon Choi, Jun-Hyeok Ahn, Seohee Yoo, Juyoun Choi, Sun-Lim Jang, Deok-Jin Lim, Chae-Seok Lee, Yong-Seok Kang, Chulhun Choi, Soo Young Kaang, Bong-Kiun Sci Rep Article Cell-permeable proteins are emerging as unconventional regulators of signal transduction and providing a potential for therapeutic applications. However, only a few of them are identified and studied in detail. We identify a novel cell-permeable protein, mouse LLP homolog (mLLP), and uncover its roles in regulating neural development. We found that mLLP is strongly expressed in developing nervous system and that mLLP knockdown or overexpression during maturation of cultured neurons affected the neuronal growth and synaptic transmission. Interestingly, extracellular addition of mLLP protein enhanced dendritic arborization, demonstrating the non-cell-autonomous effect of mLLP. Moreover, mLLP interacts with CCCTC-binding factor (CTCF) as well as transcriptional machineries and modulates gene expression involved in neuronal growth. Together, these results illustrate the characteristics and roles of previously unknown cell-permeable protein mLLP in modulating neural development. Nature Publishing Group 2016-03-10 /pmc/articles/PMC4790632/ /pubmed/26961175 http://dx.doi.org/10.1038/srep22892 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Yu, Nam-Kyung
Kim, Hyoung F.
Shim, Jaehoon
Kim, Somi
Kim, Dae Won
Kwak, Chuljung
Sim, Su-Eon
Choi, Jun-Hyeok
Ahn, Seohee
Yoo, Juyoun
Choi, Sun-Lim
Jang, Deok-Jin
Lim, Chae-Seok
Lee, Yong-Seok
Kang, Chulhun
Choi, Soo Young
Kaang, Bong-Kiun
A transducible nuclear/nucleolar protein, mLLP, regulates neuronal morphogenesis and synaptic transmission
title A transducible nuclear/nucleolar protein, mLLP, regulates neuronal morphogenesis and synaptic transmission
title_full A transducible nuclear/nucleolar protein, mLLP, regulates neuronal morphogenesis and synaptic transmission
title_fullStr A transducible nuclear/nucleolar protein, mLLP, regulates neuronal morphogenesis and synaptic transmission
title_full_unstemmed A transducible nuclear/nucleolar protein, mLLP, regulates neuronal morphogenesis and synaptic transmission
title_short A transducible nuclear/nucleolar protein, mLLP, regulates neuronal morphogenesis and synaptic transmission
title_sort transducible nuclear/nucleolar protein, mllp, regulates neuronal morphogenesis and synaptic transmission
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4790632/
https://www.ncbi.nlm.nih.gov/pubmed/26961175
http://dx.doi.org/10.1038/srep22892
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