{"id":6620,"date":"2015-12-14T07:01:24","date_gmt":"2015-12-14T12:01:24","guid":{"rendered":"http:\/\/admin.acceleratingscience.com\/?p=6620"},"modified":"2016-04-29T16:52:28","modified_gmt":"2016-04-29T16:52:28","slug":"quantifying-phosphorylation-on-an-orbitrap-fusion-mass-spectrometer","status":"publish","type":"post","link":"https:\/\/www.thermofisher.com\/blog\/proteomics\/quantifying-phosphorylation-on-an-orbitrap-fusion-mass-spectrometer\/","title":{"rendered":"Quantifying Phosphorylation on an Orbitrap Fusion Mass Spectrometer"},"content":{"rendered":"<p><span><img loading=\"lazy\" decoding=\"async\" src=\"http:\/\/admin.acceleratingscience.com\/proteomics\/wp-content\/uploads\/sites\/2\/2015\/12\/fusion_image.jpg\" style=\"float: left;margin: 10px\" alt=\"Orbitrap Fusion\" width=\"323\" height=\"191\" \/>Phosphorylation mediates cell signaling<\/span>, and therefore<span class=\"thread\">&nbsp;identifying<\/span> phosphorylated states of proteins&nbsp;involved in <span>cell progression<\/span>, metabolism, growth and disease provides an opportunity to better understand cellular processes. However, with the large number of potential phosphorylation sites, there are many that remain uncharacterized. New technology is instrumental to growing this body of knowledge.<\/p>\n<p>Erickson et al.&nbsp;put the <a href=\"http:\/\/www.thermoscientific.com\/en\/product\/orbitrap-fusion-tribrid-mass-spectrometer.html\" target=\"_blank\">Orbitrap Fusion<\/a> mass spectrometer (Thermo Scientific) to the test by comparing&nbsp;phosphopeptide levels from five&nbsp;mouse brains and five mouse livers. Their experiment used a&nbsp;two-phosphoproteome model of precursor&nbsp;ion interference to assess the accuracy of phosphopeptide&nbsp;quantitation across a number of experimental<span> approaches.<span class=\"thread\">&nbsp;They used synchronous precursor selection (SPS) to enhance tandem mass&nbsp;tag (TMT) reporter ion intensity and accuracy.<sup>1<\/sup><\/span><\/span><\/p>\n<p>The investigators <span class=\"thread\">harvested&nbsp;<\/span>the brains and livers from five mice at three&nbsp;weeks of age. They extracted the proteins&nbsp;by methanol<strong>&minus;<\/strong>chloroform&nbsp;precipitation and subsequent ice cold acetone washes and used a&nbsp;<a href=\"https:\/\/www.thermofisher.com\/order\/catalog\/product\/23225\" target=\"_blank\"><span class=\"thread\">BCA assay<\/span><\/a> (Thermo Scientific) to measure their protein concentrations. Sample enrichment ensured<span class=\"thread\">&nbsp;<\/span>there would be sufficient phosphopeptides for liquid chromatography&ndash;mass spectrometry (LC-MS). The investigators then labeled the enriched&nbsp;phosphopeptides&nbsp;using either the <span class=\"thread\"><a href=\"https:\/\/www.thermofisher.com\/order\/catalog\/product\/90061?ICID=search-product\" target=\"_blank\">6-plex<\/a> or <a href=\"https:\/\/www.thermofisher.com\/order\/catalog\/product\/90110?ICID=search-product\" target=\"_blank\">10-plex<\/a> TMT reagents <\/span>(Thermo&nbsp;Scientific) and combined&nbsp;the&nbsp;mouse brain phosphopeptides at a concentration&nbsp;of 10:2:1:1:2:10.&nbsp;To introduce interference, they mixed yeast&nbsp;phosphopeptides at a concentration of&nbsp;10:10:10:0:0:0 and<span class=\"thread\"> added the yeast t<\/span>o the mouse phosphopeptides.<\/p>\n<p>Erickson et al. collected spectra on an <a href=\"http:\/\/bit.ly\/1M8AeTe\" target=\"_blank\">Orbitrap Fusion<\/a>&nbsp;mass spectrometer coupled to an<a href=\"http:\/\/www.thermoscientific.de\/content\/dam\/tfs\/ATG\/CMD\/cmd-support\/easy-n-lc-1000\/brochures-and-catalogs\/specification-sheets\/Thermo-Scientific-EASY-nLC-1000-Product-Specifications.pdf\" target=\"_blank\">&nbsp;<span class=\"thread\">Easy-nLC 1000 ultra-high pressure&nbsp;liquid chromatography (UHPLC) pum<\/span>p<\/a> (Thermo Scientific). They&nbsp;collected FTMS1 spectra at a resolution&nbsp;of 120,000 and a maximum injection time of 100 ms and then selected the<span class=\"thread\">&nbsp;10<\/span>&nbsp;most intense ions for MS\/MS. They found MS2 quantification resulted in <span class=\"thread\">ratio distortion with wide distribution of ratios. Howe<\/span>ver, using MS3, they achieved significantly better precision in quantification of&nbsp;phosphopeptides. Neutral loss peaks after CID fragmentation are common in phosphopeptide analysis. The investigators found that even though 82% of their phosphopeptides exhibited neutral loss fragment,&nbsp;<span class=\"thread\">it&nbsp;<\/span>had little effect on ratio accuracy.&nbsp;Following from this, the investigators assert that much&nbsp;interference is likely caused by sustained low levels of singly-charged fragment ions created through the electrospray&nbsp;process, which are in turn&nbsp;co-isolated and co-fragmented with the target precursor peptide.<\/p>\n<p>In summary, the investigators showed that&nbsp;phosphopeptide analysis is challenged by multiplexed workflows. However, they also demonstrated that SPS-MS3 can overcome<span class=\"thread\"> ratio<\/span>&nbsp;distortion and that selecting only the phosphate&nbsp;neutral loss peak for MS3 scan still provided accurate ratio measurements.<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p><strong>Reference<\/strong><\/p>\n<p>1. Erickson, B.K. (2015) &#8220;<a href=\"http:\/\/http:\/\/pubs.acs.org\/doi\/abs\/10.1021\/ac503934f\" target=\"_blank\">Evaluating multiplexed quantitative phosphopeptide analysis on a hybrid quadrupole mass filter\/linear ion trap\/Orbitrap mass spectrometer<\/a>,&#8221; Analytical Chemistry, 87 (pp. 1241-1249).<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Phosphorylation mediates cell signaling, and therefore&nbsp;identifying phosphorylated states of proteins&nbsp;involved in cell progression, metabolism, growth and disease provides an opportunity to better understand cellular processes. However, with the large number of potential phosphorylation sites, there are many that remain uncharacterized. New technology is instrumental to growing this body of knowledge. Erickson et al.&nbsp;put the Orbitrap<\/p>\n","protected":false},"author":7,"featured_media":6829,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"_monsterinsights_skip_tracking":false,"_genesis_hide_title":false,"_genesis_hide_breadcrumbs":false,"_genesis_hide_singular_image":false,"_genesis_hide_footer_widgets":false,"_genesis_custom_body_class":"","_genesis_custom_post_class":"","_genesis_layout":"","_jetpack_newsletter_access":"","_jetpack_dont_email_post_to_subs":false,"_jetpack_newsletter_tier_id":0,"_jetpack_memberships_contains_paywalled_content":false,"_jetpack_memberships_contains_paid_content":false,"footnotes":""},"categories":[41],"tags":[7],"division":[],"class_list":{"0":"post-6620","1":"post","2":"type-post","3":"status-publish","4":"format-standard","5":"has-post-thumbnail","7":"category-post-translational-modifications-2","8":"tag-phosphorylation","9":"entry"},"_selected_authors":"","_selected_reviewers":"","acf":[],"yoast_head":"<!-- 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