Literature DB >> 27241791

Natural antisense transcription from a comparative perspective.

Monica J Piatek1, Victoria Henderson1, Hany S Zynad1, Andreas Werner2.   

Abstract

Natural antisense transcripts (NATs) can interfere with the expression of complementary sense transcripts with exquisite specificity. We have previously cloned NATs of Slc34a loci (encoding Na-phosphate transporters) from fish and mouse. Here we report the cloning of a human SLC34A1-related NAT that represents an alternatively spliced PFN3 transcript (Profilin3). The transcript is predominantly expressed in testis. Phylogenetic comparison suggests two distinct mechanisms producing Slc34a-related NATs: Alternative splicing of a transcript from a protein coding downstream gene (Pfn3, human/mouse) and transcription from the bi-directional promoter (Rbpja, zebrafish). Expression analysis suggested independent regulation of the complementary Slc34a mRNAs. Analysis of randomly selected bi-directionally transcribed human/mouse loci revealed limited phylogenetic conservation and independent regulation of NATs. They were reduced on X chromosomes and clustered in regions that escape inactivation. Locus structure and expression pattern suggest a NATs-associated regulatory mechanisms in testis unrelated to the physiological role of the sense transcript encoded protein.
Copyright © 2016 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Evolution; Human; Mouse; Na-phosphate transport; Natural antisense transcript

Mesh:

Substances:

Year:  2016        PMID: 27241791      PMCID: PMC4996343          DOI: 10.1016/j.ygeno.2016.05.004

Source DB:  PubMed          Journal:  Genomics        ISSN: 0888-7543            Impact factor:   5.736


  41 in total

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Journal:  RNA Biol       Date:  2009-01-02       Impact factor: 4.652

4.  The (r)evolution of SINE versus LINE distributions in primate genomes: sex chromosomes are important.

Authors:  Erika M Kvikstad; Kateryna D Makova
Journal:  Genome Res       Date:  2010-03-10       Impact factor: 9.043

5.  Transcription of antisense RNA leading to gene silencing and methylation as a novel cause of human genetic disease.

Authors:  Cristina Tufarelli; Jackie A Sloane Stanley; David Garrick; Jackie A Sharpe; Helena Ayyub; William G Wood; Douglas R Higgs
Journal:  Nat Genet       Date:  2003-06       Impact factor: 38.330

6.  Derivation of an endogenous small RNA from double-stranded Sox4 sense and natural antisense transcripts in the mouse brain.

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Journal:  Genomics       Date:  2016-01-21       Impact factor: 5.736

Review 7.  Phosphate transporters of the SLC20 and SLC34 families.

Authors:  Ian C Forster; Nati Hernando; Jürg Biber; Heini Murer
Journal:  Mol Aspects Med       Date:  2013 Apr-Jun

8.  Escape from X inactivation varies in mouse tissues.

Authors:  Joel B Berletch; Wenxiu Ma; Fan Yang; Jay Shendure; William S Noble; Christine M Disteche; Xinxian Deng
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9.  Transpositional shuffling and quality control in male germ cells to enhance evolution of complex organisms.

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10.  Genome-wide analysis of antisense transcription with Affymetrix exon array.

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  7 in total

1.  Antisense regulation of atrial natriuretic peptide expression.

Authors:  Selvi Celik; Mardjaneh Karbalaei Sadegh; Michael Morley; Carolina Roselli; Patrick T Ellinor; Thomas Cappola; J Gustav Smith; Olof Gidlöf
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2.  Ectopically expressed Slc34a2a sense-antisense transcripts cause a cerebellar phenotype in zebrafish embryos depending on RNA complementarity and Dicer.

Authors:  Monica J Piatek; Victoria Henderson; Amy Fearn; Bill Chaudhry; Andreas Werner
Journal:  PLoS One       Date:  2017-05-18       Impact factor: 3.240

Review 3.  Antisense oligonucleotides in neurological disorders.

Authors:  Claudia D Wurster; Albert C Ludolph
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Review 4.  The Function of Non-Coding RNAs in Lung Cancer Tumorigenesis.

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Journal:  Cancers (Basel)       Date:  2019-04-30       Impact factor: 6.639

5.  Interdependent Transcription of a Natural Sense/Antisense Transcripts Pair (SLC34A1/PFN3).

Authors:  Hany S Zinad; Chanachai Sae-Lee; Maria Ascensión Ariza-Mateos; Grace Adamson; Mushtaq Mufleh Khazeem; Amber Knox; Git Chung; Jelena Mann; Andreas Werner
Journal:  Noncoding RNA       Date:  2022-02-11

6.  Silencing of lncRNA AFAP1-AS1 suppressed lung cancer development by regulatory mechanism in cis and trans.

Authors:  Baoying Peng; Anfei Liu; Xuanwei Yu; Enwu Xu; Jiabin Dai; Mengcheng Li; Qiaoyuan Yang
Journal:  Oncotarget       Date:  2017-08-24

7.  Increased expression of antisense lncRNA SPINT1-AS1 predicts a poor prognosis in colorectal cancer and is negatively correlated with its sense transcript.

Authors:  Chen Li; Wei Li; Yanli Zhang; Xin Zhang; Tong Liu; Yi Zhang; Yongmei Yang; Lili Wang; Hongwei Pan; Jian Ji; Chuanxin Wang
Journal:  Onco Targets Ther       Date:  2018-07-10       Impact factor: 4.147

  7 in total

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