{"id":38,"date":"2017-09-15T15:43:39","date_gmt":"2017-09-15T15:43:39","guid":{"rendered":"http:\/\/localhost\/wordpress\/hts\/?page_id=38"},"modified":"2023-10-19T18:18:51","modified_gmt":"2023-10-19T18:18:51","slug":"sparc-shrna-archive","status":"publish","type":"page","link":"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/services\/molecular-archives\/sparc-shrna-archive\/","title":{"rendered":"SPARC shRNA"},"content":{"rendered":"<div>\n<h3><\/h3>\n<\/div>\n<p>SPARC houses both human and mouse pGIPZ lentiviral shRNAmir-GFP libraries developed by GE Dharmacon in collaboration with Dr. Greg Hannon (CSHL) and Dr. Steve Elledge (Harvard), offering access to genome wide RNAi resources. The human library contains &gt;145,000 constructs and the Mouse Library &gt;110,000 constructs. These libraries combine the design advantages of microRNA-adapted shRNA with the pGIPZ vector to create a powerful RNAi trigger capable of producing RNAi in a variety of \u00a0cell types. TurboGFP and shRNAmir are part of a bicistronic transcript allowing the visual marking of shRNAmir expressing cells. Additionally SPARC can package pGIPZ shRNA lentiviral particles for transduction into difficult cell lines, including primary and non-dividing cells.<\/p>\n<p class=\"alert\"><strong><em>Distribution of pGIPZ shRNA is limited to SickKids Investigators<\/em><\/strong><\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"aligncenter wp-image-381 size-full\" src=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/shRNA1.jpg\" alt=\"Image of pGIPZ shRNA construct\" width=\"360\" height=\"270\" srcset=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/shRNA1.jpg 360w, https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/shRNA1-300x225.jpg 300w\" sizes=\"auto, (max-width: 360px) 100vw, 360px\" \/><\/p>\n<p>From knockdown of single genes to complete pathways SPARC\u2019s shRNA screening services will accelerate the pace of discovery and augment your research. pGIPZ shRNA constructs are available at significant savings to all SickKids investigators. Please see the\u00a0<a title=\"\" href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/shrnapdf.pdf\">pGIPZ shRNA Price List<\/a>\u00a0for details.Please contact\u00a0<a href=\"mailto:cfladd@sickkids.ca?subject=SIDNET\/Openbiosystems%20Partner%20Password%20Request\">Christopher Fladd<\/a>\u00a0for more details.<\/p>\n<h4>To place orders:<\/h4>\n<h4>We request that you Email\u00a0<a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/contact\/\">Christopher Fladd <\/a>\u00a0a list of the genes you are interested in knocking down. We will then provide you with an Excel file with all the available shRNA hairpins available. You can then place an order via QReserve.<\/h4>\n<h4>\u00a0If you require any assistance in identifying individual clones or performing searches, please don&#8217;t hesitate to contact us.<\/h4>\n<h4>Available pGIPZ gene families and pathways defined by Gene Ontology:<\/h4>\n<p>pGIPZ shRNAmir gene families provide the advantages of shRNAmir design combined with the convenience of Gene ontology (GO) annotated collections targeting all genes in a particular gene family or biological pathway.<\/p>\n<p>The arrayed sets contain shRNAmir from the human and mouse GIPZ lentiviral shRNAmir libraries that target all genes falling under specific GO terms. These collections will greatly simplify pathway analysis, target identification and validation.<\/p>\n<table border=\"1\" cellspacing=\"0\" cellpadding=\"7\">\n<tbody>\n<tr>\n<td><strong>Human pGIZP Gene Families<\/strong><\/td>\n<td><strong>\u00a0\u00a0Mouse pGIPZ Gene Families<\/strong><\/td>\n<\/tr>\n<tr>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20339-SIDNET-Angiogenesis-human-pGIPZ-Collection-Nov-2009.xls\">Angiogenesis<\/a><\/td>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20349-SIDNET-Angiogenesis-mouse-pGIPZ-Collection-Nov-2009.xls\">Angiogenesis<\/a><\/td>\n<\/tr>\n<tr>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20340-SIDNET-Apoptosis-human-pGIPZ-Collection-Nov-2009.xls\">Apoptosis<\/a><\/td>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20350-SIDNET-Apoptosis-mouse-pGIPZ-Collection-Nov-2009.xls\">Apoptosis<\/a><\/td>\n<\/tr>\n<tr>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20341-SIDNET-Cell-cycle-human-pGIPZ-Collection-Nov-2009.xls\">Cell Cycle<\/a><\/td>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20351-SIDNET-Cell-Cycle-mouse-pGIPZ-Collection-Nov-2009.xls\">Cell Cycle<\/a><\/td>\n<\/tr>\n<tr>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20342-SIDNET-GPCR-human-pGIPZ-Collection-Nov-2009.xls\">GPCR<\/a><\/td>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20353-SIDNET-GPCR-mouse-pGIPZ-Collection-Nov-2009.xls\">GPCR<\/a><\/td>\n<\/tr>\n<tr>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20343-SIDNET-Kinase-human-pGIPZ-Collection-Nov-2009.xls\">Kinase<\/a><\/td>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20354-SIDNET-Kinase-Activity-mouse-pGIPZ-Collection-Nov-2009.xls\">Kinase<\/a><\/td>\n<\/tr>\n<tr>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20344-SIDNET-Phosophatase-human-pGIPZ-Collection-Nov-2009.xls\">Phosophatase<\/a><\/td>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20355-SIDNET-Phosphatase-mouse-pGIPZ-Collection-Nov-2009.xls\">Phosphatase<\/a><\/td>\n<\/tr>\n<tr>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20345-SIDNET-Transcription-factor-human-pGIPZ-Collection-Nov-2009.xls\">Transcription Factor<\/a><\/td>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20356-SIDNET-Transcription-Factors-mouse-pGIPZ-Collection-Nov-2009.xls\">Transcription Factor<\/a><\/td>\n<\/tr>\n<tr>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20346-SIDNET-Ubiquitin-human-pGIPZ-Collection-Nov-2009.xls\">Ubiquitin<\/a><\/td>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20358-SIDNET-Ubiquitin-mouse-pGIPZ-Collection-Nov-2008.xls\">Ubiquitin<\/a><\/td>\n<\/tr>\n<tr>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20347-SIDNET-Ubiquitin-ligase-human-pGIPZ-Collection-Nov-2009.xls\">Ubiquitin ligase<\/a><\/td>\n<td><a href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/20357-SIDNET-Ubiquitin-Ligase-mouse-pGIPZ-Collection-Nov-2009.xls\">Ubiquitin Ligase<\/a><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>&nbsp;<\/p>\n<p>Detailed information and instructions can be found in the\u00a0<a href=\"http:\/\/www.openbiosystems.com\/collateral\/rnai\/pi\/GIPZ_Technical_Manual.pdf\" target=\"_blank\" rel=\"noopener\">pGIPZ Manual,<\/a>\u00a0<a href=\"http:\/\/www.openbiosystems.com\/collateral\/rnai\/pi\/Arrest-In_Technical_Manual.pdf\" target=\"_blank\" rel=\"noopener\">Arrest-In Manual<\/a>,\u00a0<a href=\"http:\/\/www.openbiosystems.com\/collateral\/rnai\/pi\/Lentiviral%20shRNAmir%20for%20Stable%20and%20Regulatable%20RNAi.pdf\" target=\"_blank\" rel=\"noopener\">Lentiviral shRNAmir TechNote<\/a><\/p>\n<p><a title=\"\" href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/wp-content\/uploads\/sites\/63\/2017\/12\/17107-Limited-Label-License-shRNAmir-Technologies-.pdf\">SPARC pGIPZ Limited Use License Agreement<\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>SPARC houses both human and mouse pGIPZ lentiviral shRNAmir-GFP libraries developed by GE Dharmacon in collaboration with Dr. Greg Hannon (CSHL) and Dr. Steve Elledge (Harvard), offering access to genome wide RNAi resources. The human library contains &gt;145,000 constructs and the Mouse Library &gt;110,000 constructs. These libraries combine the design advantages of microRNA-adapted shRNA with&hellip;<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":28,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-38","page","type-page","status-publish","hentry","description-off"],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v27.0 (Yoast SEO v27.0) - https:\/\/yoast.com\/product\/yoast-seo-premium-wordpress\/ -->\n<title>SPARC shRNA - SPARC Drug Discovery<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/lab.research.sickkids.ca\/sparc-drug-discovery\/services\/molecular-archives\/sparc-shrna-archive\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"SPARC shRNA\" \/>\n<meta property=\"og:description\" content=\"SPARC houses both human and mouse pGIPZ lentiviral shRNAmir-GFP libraries developed by GE Dharmacon in collaboration with Dr. Greg Hannon (CSHL) and Dr. Steve Elledge (Harvard), offering access to genome wide RNAi resources. 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