Androgen responsive intronic non-coding RNAs
详细信息    查看全文
  • 作者:Rodrigo Louro (1)
    Helder I Nakaya (1)
    Paulo P Amaral (1)
    Fernanda Festa (1)
    Mari C Sogayar (1)
    Aline M da Silva (1)
    Sergio Verjovski-Almeida (1)
    Eduardo M Reis (1)
  • 刊名:BMC Biology
  • 出版年:2007
  • 出版时间:December 2007
  • 年:2007
  • 卷:5
  • 期:1
  • 全文大小:1654KB
  • 参考文献:1. Mattick JS: RNA regulation: a new genetics? / Nat Rev Genet 2004, 5:316-23. doi.org/10.1038/nrg1321">CrossRef
    2. Mattick JS, Makunin IV: Non-coding RNA. / Hum Mol Genet 2006,15(Suppl 1):R17-9. doi.org/10.1093/hmg/ddl046">CrossRef
    3. Willingham AT, Gingeras TR: TUF love for "junk" DNA. / Cell 2006, 125:1215-220. doi.org/10.1016/j.cell.2006.06.009">CrossRef
    4. Bartel DP: MicroRNAs: genomics, biogenesis, mechanism, and function. / Cell 2004, 116:281-97. doi.org/10.1016/S0092-8674(04)00045-5">CrossRef
    5. Kiss T: Small nucleolar RNAs: an abundant group of noncoding RNAs with diverse cellular functions. / Cell 2002, 109:145-48. doi.org/10.1016/S0092-8674(02)00718-3">CrossRef
    6. Okazaki Y, Furuno M, Kasukawa T, Adachi J, Bono H, Kondo S, Nikaido I, Osato N, Saito R, Suzuki H, Yamanaka I, Kiyosawa H, Yagi K, Tomaru Y, Hasegawa Y, Nogami A, Schonbach C, Gojobori T, Baldarelli R, Hill DP, Bult C, Hume DA, Quackenbush J, Schriml LM, Kanapin A, Matsuda H, Batalov S, Beisel KW, Blake JA, Bradt D, Brusic V, Chothia C, Corbani LE, Cousins S, Dalla E, Dragani TA, Fletcher CF, Forrest A, Frazer KS, Gaasterland T, Gariboldi M, Gissi C, Godzik A, Gough J, Grimmond S, Gustincich S, Hirokawa N, Jackson IJ, Jarvis ED, Kanai A, Kawaji H, Kawasawa Y, Kedzierski RM, King BL, Konagaya A, Kurochkin IV, Lee Y, Lenhard B, Lyons PA, Maglott DR, Maltais L, Marchionni L, McKenzie L, Miki H, Nagashima T, Numata K, Okido T, Pavan WJ, Pertea G, Pesole G, Petrovsky N, Pillai R, Pontius JU, Qi D, Ramachandran S, Ravasi T, Reed JC, Reed DJ, Reid J, Ring BZ, Ringwald M, Sandelin A, Schneider C, Semple CA, Setou M, Shimada K, Sultana R, Takenaka Y, Taylor MS, Teasdale RD, Tomita M, Verardo R, Wagner L, Wahlestedt C, Wang Y, Watanabe Y, Wells C, Wilming LG, Wynshaw-Boris A, Yanagisawa M, Yang I, Yang L, Yuan Z, Zavolan M, Zhu Y, Zimmer A, Carninci P, Hayatsu N, Hirozane-Kishikawa T, Konno H, Nakamura M, Sakazume N, Sato K, Shiraki T, Waki K, Kawai J, Aizawa K, Arakawa T, Fukuda S, Hara A, Hashizume W, Imotani K, Ishii Y, Itoh M, Kagawa I, Miyazaki A, Sakai K, Sasaki D, Shibata K, Shinagawa A, Yasunishi A, Yoshino M, Waterston R, Lander ES, Rogers J, Birney E, Hayashizaki Y: Analysis of the mouse transcriptome based on functional annotation of 60,770 full-length cDNAs. / Nature 2002, 420:563-73. doi.org/10.1038/nature01266">CrossRef
    7. Yelin R, Dahary D, Sorek R, Levanon EY, Goldstein O, Shoshan A, Diber A, Biton S, Tamir Y, Khosravi R, Nemzer S, Pinner E, Walach S, Bernstein J, Savitsky K, Rotman G: Widespread occurrence of antisense transcription in the human genome. / Nat Biotechnol 2003, 21:379-86. doi.org/10.1038/nbt808">CrossRef
    8. Penny GD, Kay GF, Sheardown SA, Rastan S, Brockdorff N: Requirement for Xist in X chromosome inactivation. / Nature 1996, 379:131-37. doi.org/10.1038/379131a0">CrossRef
    9. Bertone P, Stolc V, Royce TE, Rozowsky JS, Urban AE, Zhu X, Rinn JL, Tongprasit W, Samanta M, Weissman S, Gerstein M, Snyder M: Global identification of human transcribed sequences with genome tiling arrays. / Science 2004, 306:2242-246. doi.org/10.1126/science.1103388">CrossRef
    10. Kampa D, Cheng J, Kapranov P, Yamanaka M, Brubaker S, Cawley S, Drenkow J, Piccolboni A, Bekiranov S, Helt G, Tammana H, Gingeras TR: Novel RNAs identified from an in-depth analysis of the transcriptome of human chromosomes 21 and 22. / Genome Res 2004, 14:331-42. doi.org/10.1101/gr.2094104">CrossRef
    11. Shendure J, Church GM: Computational discovery of sense-antisense transcription in the human and mouse genomes. / Genome Biol 2002, 3:research0044.0041-research0044.0014. doi.org/10.1186/gb-2002-3-9-research0044">CrossRef
    12. Chen J, Sun M, Kent WJ, Huang X, Xie H, Wang W, Zhou G, Shi RZ, Rowley JD: Over 20% of human transcripts might form sense-antisense pairs. / Nucleic Acids Res 2004, 32:4812-820. doi.org/10.1093/nar/gkh818">CrossRef
    13. Kiyosawa H, Yamanaka I, Osato N, Kondo S, Hayashizaki Y: Antisense transcripts with FANTOM2 clone set and their implications for gene regulation. / Genome Res 2003, 13:1324-334. doi.org/10.1101/gr.982903">CrossRef
    14. Ma J, Morrow DJ, Fernandes J, Walbot V: Comparative profiling of the sense and antisense transcriptome of maize lines. / Genome Biol 2006, 7:R22. doi.org/10.1186/gb-2006-7-3-r22">CrossRef
    15. Lu J, Getz G, Miska EA, Alvarez-Saavedra E, Lamb J, Peck D, Sweet-Cordero A, Ebert BL, Mak RH, Ferrando AA, Downing JR, Jacks T, Horvitz HR, Golub TR: MicroRNA expression profiles classify human cancers. / Nature 2005, 435:834-38. doi.org/10.1038/nature03702">CrossRef
    16. Reis EM, Nakaya HI, Louro R, Canavez FC, Flatschart AV, Almeida GT, Egidio CM, Paquola AC, Machado AA, Festa F, Yamamoto D, Alvarenga R, Da Silva CC, Brito GC, Simon SD, Moreira-Filho CA, Leite KR, Camara-Lopes LH, Campos FS, Gimba E, Vignal GM, El-Dorry H, Sogayar MC, Barcinski MA, Da Silva AM, Verjovski-Almeida S: Antisense intronic non-coding RNA levels correlate to the degree of tumor differentiation in prostate cancer. / Oncogene 2004, 23:6684-692. doi.org/10.1038/sj.onc.1207880">CrossRef
    17. Ji P, Diederichs S, Wang W, Boing S, Metzger R, Schneider PM, Tidow N, Brandt B, Buerger H, Bulk E, Thomas M, Berdel WE, Serve H, Muller-Tidow C: MALAT-1, a novel noncoding RNA, and thymosin beta4 predict metastasis and survival in early-stage non-small cell lung cancer. / Oncogene 2003, 22:8031-041. doi.org/10.1038/sj.onc.1206928">CrossRef
    18. Imamura T, Yamamoto S, Ohgane J, Hattori N, Tanaka S, Shiota K: Non-coding RNA directed DNA demethylation of Sphk1 CpG island. / Biochem Biophys Res Commun 2004, 322:593-00. doi.org/10.1016/j.bbrc.2004.07.159">CrossRef
    19. Yan MD, Hong CC, Lai GM, Cheng AL, Lin YW, Chuang SE: Identification and characterization of a novel gene Saf transcribed from the opposite strand of Fas. / Hum Mol Genet 2005, 14:1465-474. doi.org/10.1093/hmg/ddi156">CrossRef
    20. Isaacs JT, Lundmo PI, Berges R, Martikainen P, Kyprianou N, English HF: Androgen regulation of programmed death of normal and malignant prostatic cells. / J Androl 1992, 13:457-64.
    21. Geck P, Szelei J, Jimenez J, Lin TM, Sonnenschein C, Soto AM: Expression of novel genes linked to the androgen-induced, proliferative shutoff in prostate cancer cells. / J Steroid Biochem Mol Biol 1997, 63:211-18. doi.org/10.1016/S0960-0760(97)00122-2">CrossRef
    22. Swinnen JV, Verhoeven G: Androgens and the control of lipid metabolism in human prostate cancer cells. / J Steroid Biochem Mol Biol 1998, 65:191-98. doi.org/10.1016/S0960-0760(97)00187-8">CrossRef
    23. Xu LL, Su YP, Labiche R, Segawa T, Shanmugam N, McLeod DG, Moul JW, Srivastava S: Quantitative expression profile of androgen-regulated genes in prostate cancer cells and identification of prostate-specific genes. / Int J Cancer 2001, 92:322-28. doi.org/10.1002/ijc.1196">CrossRef
    24. Nelson PS, Clegg N, Arnold H, Ferguson C, Bonham M, White J, Hood L, Lin B: The program of androgen-responsive genes in neoplastic prostate epithelium. / Proc Natl Acad Sci USA 2002, 99:11890-1895. doi.org/10.1073/pnas.182376299">CrossRef
    25. DePrimo SE, Diehn M, Nelson JB, Reiter RE, Matese J, Fero M, Tibshirani R, Brown PO, Brooks JD: Transcriptional programs activated by exposure of human prostate cancer cells to androgen. / Genome Biol 2002, 3:RESEARCH0032. doi.org/10.1186/gb-2002-3-7-research0032">CrossRef
    26. Xu LL, Shanmugam N, Segawa T, Sesterhenn IA, McLeod DG, Moul JW, Srivastava S: A novel androgen-regulated gene, PMEPA1, located on chromosome 20q13 exhibits high level expression in prostate. / Genomics 2000, 66:257-63. doi.org/10.1006/geno.2000.6214">CrossRef
    27. Tusher VG, Tibshirani R, Chu G: Significance analysis of microarrays applied to the ionizing radiation response. / Proc Natl Acad Sci USA 2001, 98:5116-121. doi.org/10.1073/pnas.091062498">CrossRef
    28. Iseli C, Jongeneel CV, Bucher P: ESTScan: a program for detecting, evaluating, and reconstructing potential coding regions in EST sequences. / Proc Int Conf Intell Syst Mol Biol 1999, 138-48.
    29. Rodriguez A, Griffiths-Jones S, Ashurst JL, Bradley A: Identification of mammalian microRNA host genes and transcription units. / Genome Res 2004, 14:1902-910. doi.org/10.1101/gr.2722704">CrossRef
    30. Lestrade L, Weber MJ: snoRNA-LBME-db, a comprehensive database of human H/ACA and C/D box snoRNAs. / Nucleic Acids Res 2006, 34:D158-62. doi.org/10.1093/nar/gkj002">CrossRef
    31. Griffiths-Jones S: The microRNA Registry. / Nucleic Acids Res 2004, 32:D109-11. doi.org/10.1093/nar/gkh023">CrossRef
    32. Maere S, Heymans K, Kuiper M: BiNGO: a Cytoscape plugin to assess overrepresentation of gene ontology categories in biological networks. / Bioinformatics 2005, 21:3448-449. doi.org/10.1093/bioinformatics/bti551">CrossRef
    33. Reis EM, Louro R, Nakaya HI, Verjovski-Almeida S: As antisense RNA gets intronic. / Omics 2005, 9:2-2. doi.org/10.1089/omi.2005.9.2">CrossRef
    34. Sainaghi PP, Castello L, Bergamasco L, Galletti M, Bellosta P, Avanzi GC: Gas6 induces proliferation in prostate carcinoma cell lines expressing the Axl receptor. / J Cell Physiol 2005, 204:36-4. doi.org/10.1002/jcp.20265">CrossRef
    35. Petrovics G, Liu A, Shaheduzzaman S, Furasato B, Sun C, Chen Y, Nau M, Ravindranath L, Dobi A, Srikantan V, Sesterhenn IA, McLeod DG, Vahey M, Moul JW, Srivastava S: Frequent overexpression of ETS-related gene-1 (ERG1) in prostate cancer transcriptome. / Oncogene 2005, 24:3847-852. doi.org/10.1038/sj.onc.1208518">CrossRef
    36. Kapranov P, Drenkow J, Cheng J, Long J, Helt G, Dike S, Gingeras TR: Examples of the complex architecture of the human transcriptome revealed by RACE and high-density tiling arrays. / Genome Res 2005, 15:987-97. doi.org/10.1101/gr.3455305">CrossRef
    37. Altschul SF, Madden TL, Schaffer AA, Zhang J, Zhang Z, Miller W, Lipman DJ: Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. / Nucleic Acids Res 1997, 25:3389-402. doi.org/10.1093/nar/25.17.3389">CrossRef
    38. Marchler-Bauer A, Anderson JB, Cherukuri PF, DeWeese-Scott C, Geer LY, Gwadz M, He S, Hurwitz DI, Jackson JD, Ke Z, Lanczycki CJ, Liebert CA, Liu C, Lu F, Marchler GH, Mullokandov M, Shoemaker BA, Simonyan V, Song JS, Thiessen PA, Yamashita RA, Yin JJ, Zhang D, Bryant SH: CDD: a Conserved Domain Database for protein classification. / Nucleic Acids Res 2005, 33:D192-96. doi.org/10.1093/nar/gki069">CrossRef
    39. Kishore S, Stamm S: The snoRNA HBII-52 regulates alternative splicing of the serotonin receptor 2C. / Science 2006, 311:230-32. doi.org/10.1126/science.1118265">CrossRef
    40. Shaffer PL, Jivan A, Dollins DE, Claessens F, Gewirth DT: Structural basis of androgen receptor binding to selective androgen response elements. / Proc Natl Acad Sci USA 2004, 101:4758-763. doi.org/10.1073/pnas.0401123101">CrossRef
    41. Euskirchen G, Royce TE, Bertone P, Martone R, Rinn JL, Nelson FK, Sayward F, Luscombe NM, Miller P, Gerstein M, Weissman S, Snyder M: CREB binds to multiple loci on human chromosome 22. / Mol Cell Biol 2004, 24:3804-814. doi.org/10.1128/MCB.24.9.3804-3814.2004">CrossRef
    42. Watanabe M, Nomura K, Ohyama A, Ishikawa R, Komiya Y, Hosaka K, Yamauchi E, Taniguchi H, Sasakawa N, Kumakura K, Ushiki T, Sato O, Ikebe M, Igarashi M: Myosin-Va regulates exocytosis through the submicromolar Ca2+-dependent binding of syntaxin-1A. / Mol Biol Cell 2005, 16:4519-530. doi.org/10.1091/mbc.E05-03-0252">CrossRef
    43. Au JS, Huang JD: A tissue-specific exon of myosin Va is responsible for selective cargo binding in melanocytes. / Cell Motil Cytoskeleton 2002, 53:89-02. doi.org/10.1002/cm.10061">CrossRef
    44. Lee JT, Davidow LS, Warshawsky D: Tsix, a gene antisense to Xist at the X-inactivation centre. / Nat Genet 1999, 21:400-04. doi.org/10.1038/7734">CrossRef
    45. Katayama S, Tomaru Y, Kasukawa T, Waki K, Nakanishi M, Nakamura M, Nishida H, Yap CC, Suzuki M, Kawai J, Suzuki H, Carninci P, Hayashizaki Y, Wells C, Frith M, Ravasi T, Pang KC, Hallinan J, Mattick J, Hume DA, Lipovich L, Batalov S, Engstrom PG, Mizuno Y, Faghihi MA, Sandelin A, Chalk AM, Mottagui-Tabar S, Liang Z, Lenhard B, Wahlestedt C: Antisense transcription in the mammalian transcriptome. / Science 2005, 309:1564-566. doi.org/10.1126/science.1112009">CrossRef
    46. Cawley S, Bekiranov S, Ng HH, Kapranov P, Sekinger EA, Kampa D, Piccolboni A, Sementchenko V, Cheng J, Williams AJ, Wheeler R, Wong B, Drenkow J, Yamanaka M, Patel S, Brubaker S, Tammana H, Helt G, Struhl K, Gingeras TR: Unbiased mapping of transcription factor binding sites along human chromosomes 21 and 22 points to widespread regulation of noncoding RNAs. / Cell 2004, 116:499-09. doi.org/10.1016/S0092-8674(04)00127-8">CrossRef
    47. Ravasi T, Suzuki H, Pang KC, Katayama S, Furuno M, Okunishi R, Fukuda S, Ru K, Frith MC, Gongora MM, Grimmond SM, Hume DA, Hayashizaki Y, Mattick JS: Experimental validation of the regulated expression of large numbers of non-coding RNAs from the mouse genome. / Genome Res 2006, 16:11-9. doi.org/10.1101/gr.4200206">CrossRef
    48. Johnson JM, Edwards S, Shoemaker D, Schadt EE: Dark matter in the genome: evidence of widespread transcription detected by microarray tiling experiments. / Trends Genet 2005, 21:93-02. doi.org/10.1016/j.tig.2004.12.009">CrossRef
    49. Chirgwin JM, Przybyla AE, MacDonald RJ, Rutter WJ: Isolation of biologically active ribonucleic acid from sources enriched in ribonuclease. / Biochemistry 1979, 18:5294-299. doi.org/10.1021/bi00591a005">CrossRef
    50. Dias-Neto E, Correa RG, Verjovski-Almeida S, Briones MR, Nagai MA, da Silva W Jr, Zago MA, Bordin S, Costa FF, Goldman GH, Carvalho AF, Matsukuma A, Baia GS, Simpson DH, Brunstein A, de Oliveira PS, Bucher P, Jongeneel CV, O'Hare MJ, Soares F, Brentani RR, Reis LF, de Souza SJ, Simpson AJ: Shotgun sequencing of the human transcriptome with ORF expressed sequence tags. / Proc Natl Acad Sci USA 2000, 97:3491-496. doi.org/10.1073/pnas.97.7.3491">CrossRef
    51. Brazma A, Hingamp P, Quackenbush J, Sherlock G, Spellman P, Stoeckert C, Aach J, Ansorge W, Ball CA, Causton HC, Gaasterland T, Glenisson P, Holstege FC, Kim IF, Markowitz V, Matese JC, Parkinson H, Robinson A, Sarkans U, Schulze-Kremer S, Stewart J, Taylor R, Vilo J, Vingron M: Minimum information about a microarray experiment (MIAME)-toward standards for microarray data. / Nat Genet 2001, 29:365-71. doi.org/10.1038/ng1201-365">CrossRef
    52. Peixoto BR, Vencio RZ, Egidio CM, Mota-Vieira L, Verjovski-Almeida S, Reis EM: Evaluation of reference-based two-color methods for measurement of gene expression ratios using spotted cDNA microarrays. / BMC Genomics 2006, 7:35. doi.org/10.1186/1471-2164-7-35">CrossRef
    53. Gene Expression Omnibus (GEO)[http://www.ncbi.nlm.nih.gov/geo/]
    54. Pfaffl MW: A new mathematical model for relative quantification in real-time RT-PCR. / Nucleic Acids Res 2001, 29:e45. doi.org/10.1093/nar/29.9.e45">CrossRef
    55. Matys V, Fricke E, Geffers R, Gossling E, Haubrock M, Hehl R, Hornischer K, Karas D, Kel AE, Kel-Margoulis OV, Kloos DU, Land S, Lewicki-Potapov B, Michael H, Munch R, Reuter I, Rotert S, Saxel H, Scheer M, Thiele S, Wingender E: TRANSFAC: transcriptional regulation, from patterns to profiles. / Nucleic Acids Res 2003, 31:374-78. doi.org/10.1093/nar/gkg108">CrossRef
    56. Chen H, Toyooka S, Gazdar AF, Hsieh JT: Epigenetic regulation of a novel tumor suppressor gene (hDAB2IP) in prostate cancer cell lines. / J Biol Chem 2003, 278:3121-130. doi.org/10.1074/jbc.M208230200">CrossRef
    57. Shim M, Eling TE: Protein kinase C-dependent regulation of NAG-1/placental bone morphogenic protein/MIC-1 expression in LNCaP prostate carcinoma cells. / J Biol Chem 2005, 280:18636-8642. doi.org/10.1074/jbc.M414613200">CrossRef
    58. Yang CC, Ku CY, Wei S, Shiau CW, Chen CS, Pinzone JJ, Ringel MD, Chen CS: Peroxisome proliferator-activated receptor gamma-independent repression of prostate-specific antigen expression by thiazolidinediones in prostate cancer cells. / Mol Pharmacol 2006, 69:1564-570. doi.org/10.1124/mol.105.018333">CrossRef
  • 作者单位:Rodrigo Louro (1)
    Helder I Nakaya (1)
    Paulo P Amaral (1)
    Fernanda Festa (1)
    Mari C Sogayar (1)
    Aline M da Silva (1)
    Sergio Verjovski-Almeida (1)
    Eduardo M Reis (1)

    1. Departamento de Bioquimica, Instituto de Quimica, Universidade de S?o Paulo, 05508-900, S?o Paulo, Brazil
文摘
Background Transcription of large numbers of non-coding RNAs originating from intronic regions of human genes has been recently reported, but mechanisms governing their biosynthesis and biological functions are largely unknown. In this work, we evaluated the existence of a common mechanism of transcription regulation shared by protein-coding mRNAs and intronic RNAs by measuring the effect of androgen on the transcriptional profile of a prostate cancer cell line. Results Using a custom-built cDNA microarray enriched in intronic transcribed sequences, we found 39 intronic non-coding RNAs for which levels were significantly regulated by androgen exposure. Orientation-specific reverse transcription-PCR indicated that 10 of the 13 were transcribed in the antisense direction. These transcripts are long (0.5- kb), unspliced and apparently do not code for proteins. Interestingly, we found that the relative levels of androgen-regulated intronic transcripts could be correlated with the levels of the corresponding protein-coding gene (asGAS6 and asDNAJC3) or with the alternative usage of exons (asKDELR2 and asITGA6) in the corresponding protein-coding transcripts. Binding of the androgen receptor to a putative regulatory region upstream from asMYO5A, an androgen-regulated antisense intronic transcript, was confirmed by chromatin immunoprecipitation. Conclusion Altogether, these results indicate that at least a fraction of naturally transcribed intronic non-coding RNAs may be regulated by common physiological signals such as hormones, and further corroborate the notion that the intronic complement of the transcriptome play functional roles in the human gene-expression program.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700