Literature DB >> 19767420

Complex architecture and regulated expression of the Sox2ot locus during vertebrate development.

Paulo P Amaral1, Christine Neyt, Simon J Wilkins, Marjan E Askarian-Amiri, Susan M Sunkin, Andrew C Perkins, John S Mattick.   

Abstract

The Sox2 gene is a key regulator of pluripotency embedded within an intron of a long noncoding RNA (ncRNA), termed Sox2 overlapping transcript (Sox2ot), which is transcribed in the same orientation. However, this ncRNA remains uncharacterized. Here we show that Sox2ot has multiple transcription start sites associated with genomic features that indicate regulated expression, including highly conserved elements (HCEs) and chromatin marks characteristic of gene promoters. To identify biological processes in which Sox2ot may be involved, we analyzed its expression in several developmental systems, compared to expression of Sox2. We show that Sox2ot is a stable transcript expressed in mouse embryonic stem cells, which, like Sox2, is down-regulated upon induction of embryoid body (EB) differentiation. However, in contrast to Sox2, Sox2ot is up-regulated during EB mesoderm-lineage differentiation. In adult mouse, Sox2ot isoforms were detected in tissues where Sox2 is expressed, as well as in different tissues, supporting independent regulation of expression of the ncRNA. Sox2dot, an isoform of Sox2ot transcribed from a distal HCE located >500 kb upstream of Sox2, was detected exclusively in the mouse brain, with enrichment in regions of adult neurogenesis. In addition, Sox2ot isoforms are transcribed from HCEs upstream of Sox2 in other vertebrates, including in several regions of the human brain. We also show that Sox2ot is dynamically regulated during chicken and zebrafish embryogenesis, consistently associated with central nervous system structures. These observations provide insight into the structure and regulation of the Sox2ot gene, and suggest conserved roles for Sox2ot orthologs during vertebrate development.

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Year:  2009        PMID: 19767420      PMCID: PMC2764477          DOI: 10.1261/rna.1705309

Source DB:  PubMed          Journal:  RNA        ISSN: 1355-8382            Impact factor:   4.942


  108 in total

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Journal:  Genes Dev       Date:  2008-08-01       Impact factor: 11.361

3.  Long noncoding RNAs in mouse embryonic stem cell pluripotency and differentiation.

Authors:  Marcel E Dinger; Paulo P Amaral; Tim R Mercer; Ken C Pang; Stephen J Bruce; Brooke B Gardiner; Marjan E Askarian-Amiri; Kelin Ru; Giulia Soldà; Cas Simons; Susan M Sunkin; Mark L Crowe; Sean M Grimmond; Andrew C Perkins; John S Mattick
Journal:  Genome Res       Date:  2008-06-18       Impact factor: 9.043

4.  Mapping and quantifying mammalian transcriptomes by RNA-Seq.

Authors:  Ali Mortazavi; Brian A Williams; Kenneth McCue; Lorian Schaeffer; Barbara Wold
Journal:  Nat Methods       Date:  2008-05-30       Impact factor: 28.547

5.  Stem cell transcriptome profiling via massive-scale mRNA sequencing.

Authors:  Nicole Cloonan; Alistair R R Forrest; Gabriel Kolle; Brooke B A Gardiner; Geoffrey J Faulkner; Mellissa K Brown; Darrin F Taylor; Anita L Steptoe; Shivangi Wani; Graeme Bethel; Alan J Robertson; Andrew C Perkins; Stephen J Bruce; Clarence C Lee; Swati S Ranade; Heather E Peckham; Jonathan M Manning; Kevin J McKernan; Sean M Grimmond
Journal:  Nat Methods       Date:  2008-05-30       Impact factor: 28.547

6.  Regulation of self-renewal and pluripotency by Sox2 in human embryonic stem cells.

Authors:  Helen Fong; Kristi A Hohenstein; Peter J Donovan
Journal:  Stem Cells       Date:  2008-04-03       Impact factor: 6.277

7.  Generation of human-induced pluripotent stem cells.

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8.  Integration of external signaling pathways with the core transcriptional network in embryonic stem cells.

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9.  Induced ncRNAs allosterically modify RNA-binding proteins in cis to inhibit transcription.

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Journal:  Nature       Date:  2008-05-28       Impact factor: 49.962

10.  Identification and replication of three novel myopia common susceptibility gene loci on chromosome 3q26 using linkage and linkage disequilibrium mapping.

Authors:  Toby Andrew; Nikolas Maniatis; Francis Carbonaro; S H Melissa Liew; Winston Lau; Tim D Spector; Christopher J Hammond
Journal:  PLoS Genet       Date:  2008-10-10       Impact factor: 5.917

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  99 in total

Review 1.  Functions of noncoding RNAs in neural development and neurological diseases.

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Journal:  Mol Neurobiol       Date:  2011-10-04       Impact factor: 5.590

2.  A Prognostic Signature for Lower Grade Gliomas Based on Expression of Long Non-Coding RNAs.

Authors:  Manjari Kiran; Ajay Chatrath; Xiwei Tang; Daniel Macrae Keenan; Anindya Dutta
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Review 3.  Long noncoding RNA and its contribution to autism spectrum disorders.

Authors:  Jie Tang; Yizhen Yu; Wei Yang
Journal:  CNS Neurosci Ther       Date:  2017-06-20       Impact factor: 5.243

Review 4.  The emerging role of lncRNAs in the regulation of cancer stem cells.

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5.  Enhanced cerebellar myelination with concomitant iron elevation and ultrastructural irregularities following prenatal exposure to ambient particulate matter in the mouse.

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6.  Long non-coding RNA NKILA serves as a biomarker in the early diagnosis and prognosis of patients with colorectal cancer.

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Review 7.  Epigenetic modulation during hippocampal development.

Authors:  Si-Jing Fan; An-Bang Sun; Lian Liu
Journal:  Biomed Rep       Date:  2018-10-18

8.  LncRNA SOX2OT affects cervical cancer cell growth, migration and invasion by regulating SOX2.

Authors:  Xiaohan Chang; Huijie Zhang; Qing Yang; Li Pang
Journal:  Cell Cycle       Date:  2020-04-14       Impact factor: 4.534

9.  Long Noncoding RNA-Sox2OT Knockdown Alleviates Diabetes Mellitus-Induced Retinal Ganglion Cell (RGC) injury.

Authors:  Chao-Peng Li; Shu-Hong Wang; Wen-Qi Wang; Shu-Guang Song; Xiu-Ming Liu
Journal:  Cell Mol Neurobiol       Date:  2016-05-18       Impact factor: 5.046

10.  Long noncoding RNA genes: conservation of sequence and brain expression among diverse amniotes.

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Journal:  Genome Biol       Date:  2010-07-12       Impact factor: 13.583

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