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   Extent,causes,and consequences of small RNA expression variation in human adipose tissue  
   
نویسنده parts l. ,hedman å.k. ,keildson s. ,knights a.j. ,abreu-goodger c. ,van de bunt m. ,guerra-assunção j.a. ,bartonicek n. ,van dongen s. ,mägi r. ,nisbet j. ,barrett a. ,rantalainen m. ,nica a.c. ,quail m.a. ,small k.s. ,glass d. ,enright a.j. ,winn j. ,deloukas p. ,dermitzakis e.t. ,mccarthy m.i. ,spector t.d. ,durbin r. ,lindgren c.m.
منبع plos genetics - 2012 - دوره : 8 - شماره : 5
چکیده    Small rnas are functional molecules that modulate mrna transcripts and have been implicated in the aetiology of several common diseases. however,little is known about the extent of their variability within the human population. here,we characterise the extent,causes,and effects of naturally occurring variation in expression and sequence of small rnas from adipose tissue in relation to genotype,gene expression,and metabolic traits in the muther reference cohort. we profiled the expression of 15 to 30 base pair rna molecules in subcutaneous adipose tissue from 131 individuals using high-throughput sequencing,and quantified levels of 591 micrornas and small nucleolar rnas. we identified three genetic variants and three rna editing events. highly expressed small rnas are more conserved within mammals than average,as are those with highly variable expression. we identified 14 genetic loci significantly associated with nearby small rna expression levels,seven of which also regulate an mrna transcript level in the same region. in addition,these loci are enriched for variants significant in genome-wide association studies for body mass index. contrary to expectation,we found no evidence for negative correlation between expression level of a microrna and its target mrnas. trunk fat mass,body mass index,and fasting insulin were associated with more than twenty small rna expression levels each,while fasting glucose had no significant associations. this study highlights the similar genetic complexity and shared genetic control of small rna and mrna transcripts,and gives a quantitative picture of small rna expression variation in the human population. © 2012 parts et al.
آدرس wellcome trust sanger institute,hinxton,united kingdom,donnelly centre for cellular and biomolecular research,toronto, Canada, wellcome trust centre for human genetics,university of oxford,oxford, United Kingdom, wellcome trust centre for human genetics,university of oxford,oxford, United Kingdom, wellcome trust sanger institute,hinxton, United Kingdom, european bioinformatics institute,hinxton,united kingdom,national laboratory of genomics for biodiversity (langebio),cinvestav,irapuato, Mexico, wellcome trust centre for human genetics,university of oxford,oxford,united kingdom,oxford centre for diabetes,endocrinology,and metabolism,university of oxford,oxford, United Kingdom, european bioinformatics institute,hinxton,united kingdom,pdbc,instituto gulbenkian de ciência,oeiras, Portugal, european bioinformatics institute,hinxton, United Kingdom, european bioinformatics institute,hinxton, United Kingdom, wellcome trust centre for human genetics,university of oxford,oxford,united kingdom,estonian genome center,university of tartu,tartu, Estonia, wellcome trust sanger institute,hinxton, United Kingdom, oxford centre for diabetes,endocrinology,and metabolism,university of oxford,oxford, United Kingdom, wellcome trust centre for human genetics,university of oxford,oxford,united kingdom,department of statistics,university of oxford,oxford, United Kingdom, department of genetic medicine and development and institute of genetics and genomics in geneva,university of geneva medical school,geneva, Switzerland, wellcome trust sanger institute,hinxton, United Kingdom, department of twin research and genetic epidemiology,king's college london,london, United Kingdom, department of twin research and genetic epidemiology,king's college london,london, United Kingdom, european bioinformatics institute,hinxton, United Kingdom, microsoft research,cambridge, United Kingdom, wellcome trust sanger institute,hinxton, United Kingdom, department of genetic medicine and development and institute of genetics and genomics in geneva,university of geneva medical school,geneva, Switzerland, wellcome trust centre for human genetics,university of oxford,oxford,united kingdom,oxford centre for diabetes,endocrinology,and metabolism,university of oxford,oxford, United Kingdom, department of twin research and genetic epidemiology,king's college london,london, United Kingdom, wellcome trust sanger institute,hinxton, United Kingdom, wellcome trust centre for human genetics,university of oxford,oxford, United Kingdom
 
     
   
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