Literature DB >> 17360642

Human polymorphism at microRNAs and microRNA target sites.

Matthew A Saunders1, Han Liang, Wen-Hsiung Li.   

Abstract

MicroRNAs (miRNAs) function as endogenous translational repressors of protein-coding genes in animals by binding to target sites in the 3' UTRs of mRNAs. Because a single nucleotide change in the sequence of a target site can affect miRNA regulation, naturally occurring SNPs in target sites are candidates for functional variation that may be of interest for biomedical applications and evolutionary studies. However, little is known to date about variation among humans at miRNAs and their target sites. In this study, we analyzed publicly available SNP data in context with miRNAs and their target sites throughout the human genome, and we found a relatively low level of variation in functional regions of miRNAs, but an appreciable level of variation at target sites. Approximately 400 SNPs were found at experimentally verified target sites or predicted target sites that are otherwise evolutionarily conserved across mammals. Moreover, approximately 250 SNPs potentially create novel target sites for miRNAs in humans. If some variants have functional effects, they might confer phenotypic differences among humans. Although the majority of these SNPs appear to be evolving under neutrality, interestingly, some of these SNPs are found at relatively high population frequencies even in experimentally verified targets, and a few variants are associated with atypically long-range haplotypes that may have been subject to recent positive selection.

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Year:  2007        PMID: 17360642      PMCID: PMC1805605          DOI: 10.1073/pnas.0611347104

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  25 in total

1.  A mutation creating a potential illegitimate microRNA target site in the myostatin gene affects muscularity in sheep.

Authors:  Alex Clop; Fabienne Marcq; Haruko Takeda; Dimitri Pirottin; Xavier Tordoir; Bernard Bibé; Jacques Bouix; Florian Caiment; Jean-Michel Elsen; Francis Eychenne; Catherine Larzul; Elisabeth Laville; Françoise Meish; Dragan Milenkovic; James Tobin; Carole Charlier; Michel Georges
Journal:  Nat Genet       Date:  2006-06-04       Impact factor: 38.330

2.  The widespread impact of mammalian MicroRNAs on mRNA repression and evolution.

Authors:  Kyle Kai-How Farh; Andrew Grimson; Calvin Jan; Benjamin P Lewis; Wendy K Johnston; Lee P Lim; Christopher B Burge; David P Bartel
Journal:  Science       Date:  2005-11-24       Impact factor: 47.728

3.  A haplotype map of the human genome.

Authors: 
Journal:  Nature       Date:  2005-10-27       Impact factor: 49.962

4.  Combinatorial microRNA target predictions.

Authors:  Azra Krek; Dominic Grün; Matthew N Poy; Rachel Wolf; Lauren Rosenberg; Eric J Epstein; Philip MacMenamin; Isabelle da Piedade; Kristin C Gunsalus; Markus Stoffel; Nikolaus Rajewsky
Journal:  Nat Genet       Date:  2005-04-03       Impact factor: 38.330

5.  Polymorphisms in human pre-miRNAs.

Authors:  Naoharu Iwai; Hiroaki Naraba
Journal:  Biochem Biophys Res Commun       Date:  2005-06-17       Impact factor: 3.575

Review 6.  microRNA target predictions in animals.

Authors:  Nikolaus Rajewsky
Journal:  Nat Genet       Date:  2006-06       Impact factor: 38.330

7.  TarBase: A comprehensive database of experimentally supported animal microRNA targets.

Authors:  Praveen Sethupathy; Benoit Corda; Artemis G Hatzigeorgiou
Journal:  RNA       Date:  2005-12-22       Impact factor: 4.942

Review 8.  Positive natural selection in the human lineage.

Authors:  P C Sabeti; S F Schaffner; B Fry; J Lohmueller; P Varilly; O Shamovsky; A Palma; T S Mikkelsen; D Altshuler; E S Lander
Journal:  Science       Date:  2006-06-16       Impact factor: 47.728

9.  Ensembl 2006.

Authors:  E Birney; D Andrews; M Caccamo; Y Chen; L Clarke; G Coates; T Cox; F Cunningham; V Curwen; T Cutts; T Down; R Durbin; X M Fernandez-Suarez; P Flicek; S Gräf; M Hammond; J Herrero; K Howe; V Iyer; K Jekosch; A Kähäri; A Kasprzyk; D Keefe; F Kokocinski; E Kulesha; D London; I Longden; C Melsopp; P Meidl; B Overduin; A Parker; G Proctor; A Prlic; M Rae; D Rios; S Redmond; M Schuster; I Sealy; S Searle; J Severin; G Slater; D Smedley; J Smith; A Stabenau; J Stalker; S Trevanion; A Ureta-Vidal; J Vogel; S White; C Woodwark; T J P Hubbard
Journal:  Nucleic Acids Res       Date:  2006-01-01       Impact factor: 16.971

10.  miRBase: microRNA sequences, targets and gene nomenclature.

Authors:  Sam Griffiths-Jones; Russell J Grocock; Stijn van Dongen; Alex Bateman; Anton J Enright
Journal:  Nucleic Acids Res       Date:  2006-01-01       Impact factor: 16.971

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  309 in total

Review 1.  New roles of carboxypeptidase E in endocrine and neural function and cancer.

Authors:  Niamh X Cawley; William C Wetsel; Saravana R K Murthy; Joshua J Park; Karel Pacak; Y Peng Loh
Journal:  Endocr Rev       Date:  2012-03-07       Impact factor: 19.871

Review 2.  Evolution of microRNA diversity and regulation in animals.

Authors:  Eugene Berezikov
Journal:  Nat Rev Genet       Date:  2011-11-18       Impact factor: 53.242

3.  A functional variant at the miR-184 binding site in TNFAIP2 and risk of squamous cell carcinoma of the head and neck.

Authors:  Zhensheng Liu; Sheng Wei; Hongxia Ma; Mei Zhao; Jeffrey N Myers; Randal S Weber; Erich M Sturgis; Qingyi Wei
Journal:  Carcinogenesis       Date:  2011-09-20       Impact factor: 4.944

4.  Lack of association between miR-149 C>T polymorphism and cancer susceptibility: a meta-analysis based on 4,677 cases and 4,830 controls.

Authors:  Jian Zhang; Yan-Fei Liu; Yu Gan
Journal:  Mol Biol Rep       Date:  2012-06-20       Impact factor: 2.316

5.  MicroRNA polymorphisms: a giant leap towards personalized medicine.

Authors:  Prasun J Mishra
Journal:  Per Med       Date:  2009-03-01       Impact factor: 2.512

Review 6.  Genome-wide approaches in the study of microRNA biology.

Authors:  Melissa L Wilbert; Gene W Yeo
Journal:  Wiley Interdiscip Rev Syst Biol Med       Date:  2010-12-31

7.  Mature microRNA sequence polymorphism in MIR196A2 is associated with risk and prognosis of head and neck cancer.

Authors:  Brock C Christensen; Michele Avissar-Whiting; Lauren G Ouellet; Rondi A Butler; Heather H Nelson; Michael D McClean; Carmen J Marsit; Karl T Kelsey
Journal:  Clin Cancer Res       Date:  2010-05-25       Impact factor: 12.531

8.  Single nucleotide polymorphisms in microRNA binding sites of oncogenes: implications in cancer and pharmacogenomics.

Authors:  Mayakannan Manikandan; Arasambattu Kannan Munirajan
Journal:  OMICS       Date:  2013-11-28

9.  The effects of a MAP2K5 microRNA target site SNP on risk for anxiety and depressive disorders.

Authors:  Kevin P Jensen; Henry R Kranzler; Murray B Stein; Joel Gelernter
Journal:  Am J Med Genet B Neuropsychiatr Genet       Date:  2014-01-16       Impact factor: 3.568

10.  Identification of a functional SNP in the 3'UTR of CXCR2 that is associated with reduced risk of lung cancer.

Authors:  Bríd M Ryan; Ana I Robles; Andrew C McClary; Majda Haznadar; Elise D Bowman; Sharon R Pine; Derek Brown; Mohammed Khan; Kouya Shiraishi; Takashi Kohno; Hirokazu Okayama; Ramakrishna Modali; Jun Yokota; Curtis C Harris
Journal:  Cancer Res       Date:  2014-12-05       Impact factor: 12.701

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