Cargando…

Class I(A) PI3Kinase Regulatory Subunit, p85α, Mediates Mast Cell Development through Regulation of Growth and Survival Related Genes

Stem cell factor (SCF) mediated KIT receptor activation plays a pivotal role in mast cell growth, maturation and survival. However, the signaling events downstream from KIT are poorly understood. Mast cells express multiple regulatory subunits of class 1(A) PI3Kinase (PI3K) including p85α, p85β, p50...

Descripción completa

Detalles Bibliográficos
Autores principales: Krishnan, Subha, Mali, Raghuveer Singh, Koehler, Karl R., Vemula, Sasidhar, Chatterjee, Anindya, Ghosh, Joydeep, Ramdas, Baskar, Ma, Peilin, Hashino, Eri, Kapur, Reuben
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3251560/
https://www.ncbi.nlm.nih.gov/pubmed/22238586
http://dx.doi.org/10.1371/journal.pone.0028979
_version_ 1782220537503678464
author Krishnan, Subha
Mali, Raghuveer Singh
Koehler, Karl R.
Vemula, Sasidhar
Chatterjee, Anindya
Ghosh, Joydeep
Ramdas, Baskar
Ma, Peilin
Hashino, Eri
Kapur, Reuben
author_facet Krishnan, Subha
Mali, Raghuveer Singh
Koehler, Karl R.
Vemula, Sasidhar
Chatterjee, Anindya
Ghosh, Joydeep
Ramdas, Baskar
Ma, Peilin
Hashino, Eri
Kapur, Reuben
author_sort Krishnan, Subha
collection PubMed
description Stem cell factor (SCF) mediated KIT receptor activation plays a pivotal role in mast cell growth, maturation and survival. However, the signaling events downstream from KIT are poorly understood. Mast cells express multiple regulatory subunits of class 1(A) PI3Kinase (PI3K) including p85α, p85β, p50α, and p55α. While it is known that PI3K plays an essential role in mast cells; the precise mechanism by which these regulatory subunits impact specific mast cell functions including growth, survival and cycling are not known. We show that loss of p85α impairs the growth, survival and cycling of mast cell progenitors (MCp). To delineate the molecular mechanism (s) by which p85α regulates mast cell growth, survival and cycling, we performed microarray analyses to compare the gene expression profile of MCps derived from WT and p85α-deficient mice in response to SCF stimulation. We identified 151 unique genes exhibiting altered expression in p85α-deficient cells in response to SCF stimulation compared to WT cells. Functional categorization based on DAVID bioinformatics tool and Ingenuity Pathway Analysis (IPA) software relates the altered genes due to lack of p85α to transcription, cell cycle, cell survival, cell adhesion, cell differentiation, and signal transduction. Our results suggest that p85α is involved in mast cell development through regulation of expression of growth, survival and cell cycle related genes.
format Online
Article
Text
id pubmed-3251560
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-32515602012-01-11 Class I(A) PI3Kinase Regulatory Subunit, p85α, Mediates Mast Cell Development through Regulation of Growth and Survival Related Genes Krishnan, Subha Mali, Raghuveer Singh Koehler, Karl R. Vemula, Sasidhar Chatterjee, Anindya Ghosh, Joydeep Ramdas, Baskar Ma, Peilin Hashino, Eri Kapur, Reuben PLoS One Research Article Stem cell factor (SCF) mediated KIT receptor activation plays a pivotal role in mast cell growth, maturation and survival. However, the signaling events downstream from KIT are poorly understood. Mast cells express multiple regulatory subunits of class 1(A) PI3Kinase (PI3K) including p85α, p85β, p50α, and p55α. While it is known that PI3K plays an essential role in mast cells; the precise mechanism by which these regulatory subunits impact specific mast cell functions including growth, survival and cycling are not known. We show that loss of p85α impairs the growth, survival and cycling of mast cell progenitors (MCp). To delineate the molecular mechanism (s) by which p85α regulates mast cell growth, survival and cycling, we performed microarray analyses to compare the gene expression profile of MCps derived from WT and p85α-deficient mice in response to SCF stimulation. We identified 151 unique genes exhibiting altered expression in p85α-deficient cells in response to SCF stimulation compared to WT cells. Functional categorization based on DAVID bioinformatics tool and Ingenuity Pathway Analysis (IPA) software relates the altered genes due to lack of p85α to transcription, cell cycle, cell survival, cell adhesion, cell differentiation, and signal transduction. Our results suggest that p85α is involved in mast cell development through regulation of expression of growth, survival and cell cycle related genes. Public Library of Science 2012-01-04 /pmc/articles/PMC3251560/ /pubmed/22238586 http://dx.doi.org/10.1371/journal.pone.0028979 Text en Krishnan et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Krishnan, Subha
Mali, Raghuveer Singh
Koehler, Karl R.
Vemula, Sasidhar
Chatterjee, Anindya
Ghosh, Joydeep
Ramdas, Baskar
Ma, Peilin
Hashino, Eri
Kapur, Reuben
Class I(A) PI3Kinase Regulatory Subunit, p85α, Mediates Mast Cell Development through Regulation of Growth and Survival Related Genes
title Class I(A) PI3Kinase Regulatory Subunit, p85α, Mediates Mast Cell Development through Regulation of Growth and Survival Related Genes
title_full Class I(A) PI3Kinase Regulatory Subunit, p85α, Mediates Mast Cell Development through Regulation of Growth and Survival Related Genes
title_fullStr Class I(A) PI3Kinase Regulatory Subunit, p85α, Mediates Mast Cell Development through Regulation of Growth and Survival Related Genes
title_full_unstemmed Class I(A) PI3Kinase Regulatory Subunit, p85α, Mediates Mast Cell Development through Regulation of Growth and Survival Related Genes
title_short Class I(A) PI3Kinase Regulatory Subunit, p85α, Mediates Mast Cell Development through Regulation of Growth and Survival Related Genes
title_sort class i(a) pi3kinase regulatory subunit, p85α, mediates mast cell development through regulation of growth and survival related genes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3251560/
https://www.ncbi.nlm.nih.gov/pubmed/22238586
http://dx.doi.org/10.1371/journal.pone.0028979
work_keys_str_mv AT krishnansubha classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes
AT maliraghuveersingh classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes
AT koehlerkarlr classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes
AT vemulasasidhar classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes
AT chatterjeeanindya classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes
AT ghoshjoydeep classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes
AT ramdasbaskar classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes
AT mapeilin classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes
AT hashinoeri classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes
AT kapurreuben classiapi3kinaseregulatorysubunitp85amediatesmastcelldevelopmentthroughregulationofgrowthandsurvivalrelatedgenes