{"id":326,"date":"2023-08-10T15:21:26","date_gmt":"2023-08-10T15:21:26","guid":{"rendered":"https:\/\/pediatricbrainfoundation.org\/archive\/scientists-discover-tiny-gene-fragments-linked-brain-development-and-autism\/"},"modified":"2023-08-10T15:21:26","modified_gmt":"2023-08-10T15:21:26","slug":"scientists-discover-tiny-gene-fragments-linked-brain-development-and-autism","status":"publish","type":"page","link":"https:\/\/pediatricbrainfoundation.org\/archive\/scientists-discover-tiny-gene-fragments-linked-brain-development-and-autism\/","title":{"rendered":"Scientists discover tiny gene fragments linked to brain development and autism"},"content":{"rendered":"<div class=\"row-fluid\">\n<section class=\"span12\">\n<div class=\"back-link\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/\">\u00ab Back to Scientific News<\/a><\/div>\n<\/section><\/div>\n<div class=\"row-fluid\">\n<section class=\"content-top span12\">\n      <a id=\"main-content\"><\/a><\/p>\n<h1 class=\"page-header\">Scientists discover tiny gene fragments linked to brain development and autism<\/h1>\n<\/section><\/div>\n<div class=\"row-fluid\">\n<section class=\"main-content span9\">\n<section id=\"block-system-main\" class=\"block-system block-page-content clearfix\">\n<div class=\"section-in\">\n<div class=\"section-inn\">\n<div class=\"section-innn\">\n<article id=\"node-6377\" class=\"node node-science-article clearfix\">\n<div class=\"submitted\">\n            <span class=\"created\">Thursday, December 18, 2014<\/span>&nbsp;&nbsp;\u00b7&nbsp;&nbsp;Posted by <a href=\"http:\/\/news.utoronto.ca\/scientists-discover-tiny-gene-fragments-linked-brain-development-and-autism\" target=\"_blank\" rel=\"noopener\">University of Toronto<\/a>    <\/div>\n<p>  <!--\nTHIS FILE IS NOT USED AND IS HERE AS A STARTING POINT FOR CUSTOMIZATION ONLY.\nSee http:\/\/api.drupal.org\/api\/function\/theme_field\/7 for details.\nAfter copying this file to your theme's folder and customizing it, remove this\nHTML comment.\n--><\/p>\n<div id=\"field-headline\" class=\"field field-name-field-headline field-type-text-long field-label-hidden\">\n<div class=\"field-items\">\n<div class=\"field-item even\">&quot;We were amazed by the extent to which microexons are misregulated in people with autism,&quot; says Professor Benjamin Blencowe<\/div>\n<\/p><\/div>\n<\/div>\n<p><!--\nTHIS FILE IS NOT USED AND IS HERE AS A STARTING POINT FOR CUSTOMIZATION ONLY.\nSee http:\/\/api.drupal.org\/api\/function\/theme_field\/7 for details.\nAfter copying this file to your theme's folder and customizing it, remove this\nHTML comment.\n--><\/p>\n<div id=\"body\" class=\"field field-name-body field-type-text-with-summary field-label-hidden prose\">\n<div class=\"field-items\">\n<div class=\"field-item even\">\n<p class=\"tkgyxz44ddvou8s4e\">\n<p class=\"tkgyxz44ddvou8s4e\">Very small segments of genes called &#8220;microexons&#8221; influence how proteins interact with each other in the nervous system, scientists at the University of Toronto have found, opening up a new line of research into the cause of autism.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">The researchers found that microexons are used in neurons by alternative splicing, a process in which a single gene can produce many different proteins. Microexons are pasted &#8212; or spliced &#8212; into gene messengers (mRNAs) to generate forms of proteins that the nervous system needs to function properly. Misregulation of this process, the researchers found, can have major effects on how proteins function.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">&#8220;We&#8217;re seeing a new landscape of splicing regulation that is highly specific to the nervous system, and which is very important for controlling how proteins interact with each other,&#8221; said Benjamin Blencowe, a Professor in the University of Toronto&#8217;s Donnelly Centre for Cellular and Biomolecular Research and Department of Molecular Genetics. &#8220;In addition, a large number of the microexons we detected show misregulation in people with autism.&#8221;<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">Scientists &#8212; including Blencowe and his colleagues at U of T &#8212; previously created algorithms to predict which exons are spliced in mRNAs to produce proteins. But these algorithms failed to capture microexons.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">In their new study, Blencowe and his colleagues, led by postdoctoral fellow Manuel Irimia, created a new computational tool that detects many more splicing combinations within a cell, including those that involve microexons. They used their tool to discover splicing of microexons in neurons.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">The leading biomedical research journal Cell published the findings.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">&#8220;We were really surprised to find that some microexons encode just 1 or 2 amino acids &#8212; the basic building blocks of proteins,&#8221; said Irimia, who recently took a position as a junior group leader at the Centre for Genomic Regulation in Barcelona, Spain, where he is setting up his own lab. &#8220;And they modify proteins &#8212; changing their surface structures &#8212; in ways that longer exons cannot. Microexons perform a type of microsurgery on proteins to alter their function.&#8221;<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">The researchers also found that neuronal microexons are highly conserved during evolution, which strongly suggests they play conserved functional roles. They discovered the existence of similar microexons in many vertebrate species, including mice and humans.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">Perhaps most importantly, the researchers also found that even though microexons make very small changes to proteins, the effects of those changes can be dramatic. For example, when they deleted microexons they found that in some cases proteins completely lost their ability to interact with partner proteins.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">As well, the group found that many neuronal microexons are weakly spliced in the brains of some individuals with autism, and that this reduced splicing activity is linked to the under-expression of a splicing regulatory protein called nSR100. Blencowe is cautiously optimistic about the potential therapeutic value of this discovery. &#8220;While a lot more work has to be done to understand the functions of microexons in the nervous system, we were amazed by the extent to which microexons are misregulated in people with autism, which suggests they are an important component of this neurological disorder.&#8221;<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">Blencowe and his colleagues are pursuing the role of nSR100 in autism as they map the function of microexons in more detail. By following this line of research, they hope to learn how the misregulation of microexons contributes to autism as well as other disorders of the nervous system.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">&#8220;Microexons are an underappreciated class of splicing event that is highly conserved. They change the way proteins interact and clearly play an important role in development, so understanding their role in human neurological disorders represents a major avenue of future research,&#8221; said Blencowe.<\/p>\n<p><br class=\"tkgyxz44ddvou8s4e\"\/><\/div>\n<\/p><\/div>\n<\/div>\n<p>      <!--\nTHIS FILE IS NOT USED AND IS HERE AS A STARTING POINT FOR CUSTOMIZATION ONLY.\nSee http:\/\/api.drupal.org\/api\/function\/theme_field\/7 for details.\nAfter copying this file to your theme's folder and customizing it, remove this\nHTML comment.\n--><\/p>\n<div id=\"field-tags\" class=\"field field-name-field-tags field-type-taxonomy-term-reference field-label-hidden\">\n<div class=\"field-items\">\n<div class=\"field-item even\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/tags\/autism\/\">autism<\/a><\/div>\n<div class=\"field-item odd\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/tags\/microexons\/\">Microexons<\/a><\/div>\n<div class=\"field-item even\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\">nSR100<\/a><\/div>\n<div class=\"field-item odd\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\">Protein Interaction<\/a><\/div>\n<div class=\"field-item even\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\">Nervous System<\/a><\/div>\n<div class=\"field-item odd\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\">splicing combinations<\/a><\/div>\n<div class=\"field-item even\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/tags\/mrna\/\">mRNA<\/a><\/div>\n<\/p><\/div>\n<\/div>\n<ul id=\"pager-links\" class=\"row-fluid\">\n<li id=\"prev-link\" class=\"span6\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/stunning-zinc-fireworks-when-egg-meets-sperm\/\" rel=\"prev\"><span class=\"title\">\u00ab Previous Post<\/span><span class=\"text\">Stunning zinc fireworks when egg meets sperm<\/span><\/a><\/li>\n<li id=\"next-link\" class=\"span6\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/tackling-neurotransmission-precision\/\" rel=\"next\"><span class=\"title\">Next Post \u00bb<\/span><span class=\"text\">Tackling Neurotransmission Precision<\/span><\/a><\/li>\n<\/ul>\n<\/article>\n<p> <!-- \/.node -->\n<\/div>\n<\/div>\n<\/div>\n<\/section>\n<p> <!-- \/.block --><br \/>\n      <\/section>\n<aside class=\"span3 hidden-phone\" role=\"complementary\">\n<div class=\"region region-sidebar-second\">\n<section id=\"block-views-related-content-block-3\" class=\"block block-views clearfix\">\n<div class=\"section-in\">\n<div class=\"section-inn\">\n<div class=\"section-innn\">\n<h4 class=\"block-title clearfix\">Related Disorders<\/h4>\n<div class=\"view view-related-content view-id-related_content view-display-id-block_3 view-dom-id-155246ddd03930c4679a98c4de798235\">\n<div class=\"view-content\">\n<div class=\"item-list\">\n<ul>\n<li class=\"views-row views-row-1 views-row-odd views-row-first views-row-last\">\n<div class=\"views-field views-field-title\">        <span class=\"field-content\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/disorder\/autism\/\">Autism<\/a><\/span>  <\/div>\n<\/li>\n<\/ul>\n<\/div><\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/section>\n<p> <!-- \/.block --><\/p>\n<section id=\"block-views-scientific-news-fields-block\" class=\"block block-views clearfix\">\n<div class=\"section-in\">\n<div class=\"section-inn\">\n<div class=\"section-innn\">\n<div class=\"view view-scientific-news-fields view-id-scientific_news_fields view-display-id-block view-dom-id-099f0b6802154ea222c6fa334efb9a07\">\n<div class=\"view-content\">\n<div class=\"views-row views-row-1 views-row-odd views-row-first views-row-last\">\n<div class=\"views-field views-field-field-embed-code\">\n<div class=\"field-content\">\n<blockquote class=\"twitter-tweet\" lang=\"en\" xml:lang=\"en\">\n<p class=\"tkgyxz44ddvou8s4e\">Gene fragments linked to altered brain development in autism, says <a href=\"https:\/\/twitter.com\/hashtag\/UofT?src=hash\">#UofT<\/a> study (<a href=\"https:\/\/twitter.com\/TorontoStar\">@TorontoStar<\/a>) <a href=\"http:\/\/t.co\/50tlFFwjEf\">http:\/\/t.co\/50tlFFwjEf<\/a> <a href=\"http:\/\/t.co\/YOglzQ0zWe\">pic.twitter.com\/YOglzQ0zWe<\/a><\/p>\n<p>\u2014 UofT News (@UofTNews) <a href=\"https:\/\/twitter.com\/UofTNews\/status\/546017596395769856\">December 19, 2014<\/a><\/p><\/blockquote>\n<p><script async=\"\" src=\"https:\/\/platform.twitter.com\/widgets.js\" charset=\"utf-8\"><\/script><\/div>\n<\/p><\/div>\n<\/p><\/div>\n<\/p><\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/section>\n<p> <!-- \/.block --><\/p>\n<section id=\"block-views-tags-block-1\" class=\"block block-views clearfix\">\n<div class=\"section-in\">\n<div class=\"section-inn\">\n<div class=\"section-innn\">\n<h4 class=\"block-title clearfix\">Top Science Tags<\/h4>\n<div class=\"view view-tags view-id-tags view-display-id-block_1 view-dom-id-49492637d8c63e7bacd881d5aeca1928\">\n<div class=\"view-content\">\n<div class=\"item-list\">\n<ul class=\"views-summary\">\n<li><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/tag\/autism\/\">autism<\/a>\n          <\/li>\n<li><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/tag\/autism-spectrum-disorders\/\">Autism Spectrum Disorders<\/a>\n          <\/li>\n<li><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/tag\/epilepsy\/\">epilepsy<\/a>\n          <\/li>\n<li><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/tag\/collaboration\/\">collaboration<\/a>\n          <\/li>\n<li><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/tag\/neurons\/\">neurons<\/a>\n          <\/li>\n<li><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/tag\/protein\/\">protein<\/a>\n          <\/li>\n<li><a 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href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/tackling-neurotransmission-precision\/\">Tackling Neurotransmission Precision<\/a><\/span>  <\/div>\n<\/li>\n<li class=\"views-row views-row-4 views-row-even\">\n<div class=\"views-field views-field-title\">        <span class=\"field-content\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/microexons-small-fragments-genes-essential-neurone-maturation\/\">Microexons: Small fragments of genes, essential for neurone maturation<\/a><\/span>  <\/div>\n<\/li>\n<li class=\"views-row views-row-5 views-row-odd views-row-last\">\n<div class=\"views-field views-field-title\">        <span class=\"field-content\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/master-regulator-gene-long-tied-autism-disorders-stimulates-other-genes-early\/\">&#8216;Master regulator&#8217; gene &#8212; long tied to autism disorders &#8212; stimulates other genes in early brain development<\/a><\/span>  <\/div>\n<\/li>\n<\/ul>\n<\/div><\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/section>\n<p> <!-- \/.block -->\n  <\/div>\n<\/aside>\n<p>  <!-- \/#sidebar-second -->\n  <\/div>\n","protected":false,"raw":""},"excerpt":{"rendered":"<p>\u00ab Back to Scientific News Scientists discover tiny gene [&hellip;]<\/p>\n","protected":false},"author":0,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"template_2.php","meta":{"footnotes":""},"class_list":["post-326","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v18.6 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Scientists discover tiny gene fragments linked to brain development and autism | Pediatric Brain Foundation<\/title>\n<meta name=\"description\" content=\"Very small segments of genes called &quot;microexons&quot; influence how proteins interact with each other in 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