A comprehensive proteomics and genomics analysis reveals novel transmembrane proteins in human platelets and mouse megakaryocytes including G6b-B, a novel immunoreceptor tyrosine-based inhibitory motif protein.
The platelet surface is poorly characterized due to the low abundance of many membrane proteins and the lack of specialist tools for their investigation. In this study we identified novel human platelet and mouse megakaryocyte membrane proteins using specialist proteomics and genomics approaches. Th...
Main Authors: | , , , , , , , , , , , , , , , , |
---|---|
Format: | Journal article |
Language: | English |
Published: |
American Society for Biochemistry and Molecular Biology
2007
|
_version_ | 1826284631242047488 |
---|---|
author | Senis, Y Tomlinson, M García, A Dumon, S Heath, V Herbert, J Cobbold, S Spalton, J Ayman, S Antrobus, R Zitzmann, N Bicknell, R Frampton, J Authi, K Martin, A Wakelam, M Watson, S |
author_facet | Senis, Y Tomlinson, M García, A Dumon, S Heath, V Herbert, J Cobbold, S Spalton, J Ayman, S Antrobus, R Zitzmann, N Bicknell, R Frampton, J Authi, K Martin, A Wakelam, M Watson, S |
author_sort | Senis, Y |
collection | OXFORD |
description | The platelet surface is poorly characterized due to the low abundance of many membrane proteins and the lack of specialist tools for their investigation. In this study we identified novel human platelet and mouse megakaryocyte membrane proteins using specialist proteomics and genomics approaches. Three separate methods were used to enrich platelet surface proteins prior to identification by liquid chromatography and tandem mass spectrometry: lectin affinity chromatography, biotin/NeutrAvidin affinity chromatography, and free flow electrophoresis. Many known, abundant platelet surface transmembrane proteins and several novel proteins were identified using each receptor enrichment strategy. In total, two or more unique peptides were identified for 46, 68, and 22 surface membrane, intracellular membrane, and membrane proteins of unknown subcellular localization, respectively. The majority of these were single transmembrane proteins. To complement the proteomics studies, we analyzed the transcriptome of a highly purified preparation of mature primary mouse megakaryocytes using serial analysis of gene expression in view of the increasing importance of mutant mouse models in establishing protein function in platelets. This approach identified all of the major classes of platelet transmembrane receptors, including multitransmembrane proteins. Strikingly 17 of the 25 most megakaryocyte-specific genes (relative to 30 other serial analysis of gene expression libraries) were transmembrane proteins, illustrating the unique nature of the megakaryocyte/platelet surface. The list of novel plasma membrane proteins identified using proteomics includes the immunoglobulin superfamily member G6b, which undergoes extensive alternate splicing. Specific antibodies were used to demonstrate expression of the G6b-B isoform, which contains an immunoreceptor tyrosine-based inhibition motif. G6b-B undergoes tyrosine phosphorylation and association with the SH2 domain-containing phosphatase, SHP-1, in stimulated platelets suggesting that it may play a novel role in limiting platelet activation. |
first_indexed | 2024-03-07T01:16:44Z |
format | Journal article |
id | oxford-uuid:8ef08a20-3e74-4fd8-9726-952c28a1292d |
institution | University of Oxford |
language | English |
last_indexed | 2024-03-07T01:16:44Z |
publishDate | 2007 |
publisher | American Society for Biochemistry and Molecular Biology |
record_format | dspace |
spelling | oxford-uuid:8ef08a20-3e74-4fd8-9726-952c28a1292d2022-03-26T23:01:04ZA comprehensive proteomics and genomics analysis reveals novel transmembrane proteins in human platelets and mouse megakaryocytes including G6b-B, a novel immunoreceptor tyrosine-based inhibitory motif protein.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:8ef08a20-3e74-4fd8-9726-952c28a1292dEnglishSymplectic Elements at OxfordAmerican Society for Biochemistry and Molecular Biology2007Senis, YTomlinson, MGarcía, ADumon, SHeath, VHerbert, JCobbold, SSpalton, JAyman, SAntrobus, RZitzmann, NBicknell, RFrampton, JAuthi, KMartin, AWakelam, MWatson, SThe platelet surface is poorly characterized due to the low abundance of many membrane proteins and the lack of specialist tools for their investigation. In this study we identified novel human platelet and mouse megakaryocyte membrane proteins using specialist proteomics and genomics approaches. Three separate methods were used to enrich platelet surface proteins prior to identification by liquid chromatography and tandem mass spectrometry: lectin affinity chromatography, biotin/NeutrAvidin affinity chromatography, and free flow electrophoresis. Many known, abundant platelet surface transmembrane proteins and several novel proteins were identified using each receptor enrichment strategy. In total, two or more unique peptides were identified for 46, 68, and 22 surface membrane, intracellular membrane, and membrane proteins of unknown subcellular localization, respectively. The majority of these were single transmembrane proteins. To complement the proteomics studies, we analyzed the transcriptome of a highly purified preparation of mature primary mouse megakaryocytes using serial analysis of gene expression in view of the increasing importance of mutant mouse models in establishing protein function in platelets. This approach identified all of the major classes of platelet transmembrane receptors, including multitransmembrane proteins. Strikingly 17 of the 25 most megakaryocyte-specific genes (relative to 30 other serial analysis of gene expression libraries) were transmembrane proteins, illustrating the unique nature of the megakaryocyte/platelet surface. The list of novel plasma membrane proteins identified using proteomics includes the immunoglobulin superfamily member G6b, which undergoes extensive alternate splicing. Specific antibodies were used to demonstrate expression of the G6b-B isoform, which contains an immunoreceptor tyrosine-based inhibition motif. G6b-B undergoes tyrosine phosphorylation and association with the SH2 domain-containing phosphatase, SHP-1, in stimulated platelets suggesting that it may play a novel role in limiting platelet activation. |
spellingShingle | Senis, Y Tomlinson, M García, A Dumon, S Heath, V Herbert, J Cobbold, S Spalton, J Ayman, S Antrobus, R Zitzmann, N Bicknell, R Frampton, J Authi, K Martin, A Wakelam, M Watson, S A comprehensive proteomics and genomics analysis reveals novel transmembrane proteins in human platelets and mouse megakaryocytes including G6b-B, a novel immunoreceptor tyrosine-based inhibitory motif protein. |
title | A comprehensive proteomics and genomics analysis reveals novel transmembrane proteins in human platelets and mouse megakaryocytes including G6b-B, a novel immunoreceptor tyrosine-based inhibitory motif protein. |
title_full | A comprehensive proteomics and genomics analysis reveals novel transmembrane proteins in human platelets and mouse megakaryocytes including G6b-B, a novel immunoreceptor tyrosine-based inhibitory motif protein. |
title_fullStr | A comprehensive proteomics and genomics analysis reveals novel transmembrane proteins in human platelets and mouse megakaryocytes including G6b-B, a novel immunoreceptor tyrosine-based inhibitory motif protein. |
title_full_unstemmed | A comprehensive proteomics and genomics analysis reveals novel transmembrane proteins in human platelets and mouse megakaryocytes including G6b-B, a novel immunoreceptor tyrosine-based inhibitory motif protein. |
title_short | A comprehensive proteomics and genomics analysis reveals novel transmembrane proteins in human platelets and mouse megakaryocytes including G6b-B, a novel immunoreceptor tyrosine-based inhibitory motif protein. |
title_sort | comprehensive proteomics and genomics analysis reveals novel transmembrane proteins in human platelets and mouse megakaryocytes including g6b b a novel immunoreceptor tyrosine based inhibitory motif protein |
work_keys_str_mv | AT senisy acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT tomlinsonm acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT garciaa acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT dumons acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT heathv acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT herbertj acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT cobbolds acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT spaltonj acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT aymans acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT antrobusr acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT zitzmannn acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT bicknellr acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT framptonj acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT authik acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT martina acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT wakelamm acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT watsons acomprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT senisy comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT tomlinsonm comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT garciaa comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT dumons comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT heathv comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT herbertj comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT cobbolds comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT spaltonj comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT aymans comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT antrobusr comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT zitzmannn comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT bicknellr comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT framptonj comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT authik comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT martina comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT wakelamm comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein AT watsons comprehensiveproteomicsandgenomicsanalysisrevealsnoveltransmembraneproteinsinhumanplateletsandmousemegakaryocytesincludingg6bbanovelimmunoreceptortyrosinebasedinhibitorymotifprotein |