Whole-mount in situ Hybridization of Mitochondrial rRNA and RNase MRP RNA in Xenopus laevis Oocytes

  • Jeong, Sun-Joo (Department of Molecular Biology, College of Sciences, Dankook University)
  • 발행 : 1998.12.01

초록

In order to analyze the intracellu1ar localization of specific RNA components of ribonucleoproteins (RNP) in Xenopus oocytes, a modified protocol of whole-mount in situ Hybridization is presented in this paper, Mitochondria specific 12S rRNA probe was used to detect the amplification and distribution of mitochondria in various stages of the oocyte life cycle, and the results were found to be consistent with previously known distribution of mitochondria. The results with other specific probes (U1 and U3 small nuclear RNAs, and 5S RNA) also indicate that this procedure is generally effective in localizing RNAs in RNP complexes even inside organelles. In addition, the RNA component of RNase MRP, the RNP with endoribo-nuclease activity, localize to the nucleus in various stages of the oocyte life cycle. Some of MRP RNA, however, were found to be localized to the special population of mitochondria near the nucleus, especially in the active stage of mitochondrial amplification. It suggests dual localization of RNase MRP in the nucleus and mitochondria, which is consistent with the proposed roles of RNase MRP in mitochondrial DNA replication and in rRNA processing in the nucleolus.

키워드

참고문헌

  1. J Biol Chem v.267 Characterization of a Xenopus laevis ribonucleoprotein endoribonuclease: isolation of the RNA component and its expression during development Bennett JL;Jeong-Yu;Clayton D
  2. Material Effects in Development Oocyte mitochondria Billett FS;Newth DR(ed);Balls M(ed)
  3. J Cell Biol v.102 In situ hybridization at the electron microscope level: localization of transcripts on ultrathin sections of lowicryl K4M-embedded tissue using biotinylated probes and protein A-gold complexes Binder M;Tourmente S;Roth J;Renaud M;Gehring WJ
  4. Chromosoma v.35 A timing study of DNA amplification in Xenopus laevis oocytes Bird AP;Birnstiel ML
  5. Science v.160 Specific gene amplification in oocytes Brown DD;Dawid IB
  6. Development v.112 Developmental expression of fibrillarin and U3 snRNA in Xenopus laevis Caizergues-Ferrer M;Mathieu C;Mariottini P;Amalric F;Amaldi F
  7. J Cell Sci v.41 Development of the mitochondrial DNA molecules in relation to organelle biogenesis in oocytes of Xenopus laevis Callen JC;Dennebouy N;Mounolou JC
  8. Exp Cell Res v.83 Changes in D-loop frequency and superhelicity among the mitochondrial DNA molecules in relation to organelle biogenesis in oocytes of Xenopus laevis Callen JC;Dennebouy N;Mounolou JC
  9. EMBO J v.6 A novel endoribonuclease cleaves at a priming site of a mouse mitochondrial DNA replication Chang DD;Clayton DA
  10. Genes & Dev v.12 Purification and characterization of the nuclear RNase P holoenzyme complex reveals extensive subunit overlap with RNase MRP Chamberlin JR;Lee Y;Lane WS;Engelke DR
  11. Dev Biol v.27 Biogenesis of mitochondria during Xenopus laevis development Chase JW;Dawid IB
  12. Proc Natl Acad Sci USA v.91 The RNA of RNase MRP is required for normal processing of ribosomal RNA Chu S;Zengel JM;Lindahl L
  13. RNA v.3 A novel protein shared by RNae MRP and RNase P Chu S;Zengel JM;Lindahl L
  14. Mol Reprod Dev v.42 Distribution of RNase MRP RNA during Xenopus laevis oogenesis Davis AF;Jeong-Yu S;Calyton DA
  15. Development v.105 A wholemount immunocytochemical analysis of the expression of the intermediate filament protein vimentin in Xenopus Dent JA;Polson AG;Klymkowsky MW
  16. Nature v.295 Intracellular transport of microinjected 5S and small nuclear RNAs De Robertis EM;Lienhard S;Parisot RF
  17. EMBO J v.16 Pop3p is essential for the activity of the RNase MRP and RNase P ribonucleoproteins in vivo Dichtl B;Tollervey D
  18. J Morphol v.136 Oogenesis in Xenopus laevis (Daudin).1. Stages of oocyte development in laboratory maintainde animals Dumont JN
  19. Dev Biol v.143 Organization, nucleation, and acetylation of microtubules in Xenopus laevis oocyte: a study by conforcal immunofluorescence microscopy Gard DL
  20. Dev Biol v.105 The mitochondrial cloud of Xenopus oocytes: the source of germinal granule material Haesman J;Quarmby J;Wylie CC
  21. Xenopus laevis: Practical Uses in Cell and Molecular Biology, Methods in Cell Biology, Vol 36 In situ hybridization: an improved wholemount method for Xenopus embryos Harland RM;Kay BK(ed);Peng HB(ed)
  22. J Cell Biol v.131 Dynamic localization of RNase MRP RNA in the nucleolus observed by flrorescent RNA cytochemistry in living cells Jacobson MR;Cao LG;Wang YL;Pederson T
  23. Mol Cell Biol v.12 Test of the double-strand-break repair model of recombination in Xenopus laevis oocytes Jeong-Yu S;Carroll D
  24. J Inherited Metab Dis v.19 Regulation and function of the mitochondrial genome Jeong-Yu S;Clayton DA
  25. Gene Expression v.5 Subtoe determinants of the mucleocytooplsmic partitioning of in vivo-transcribed RNase MRP RNA in Xenopus laevis oocytes Jeong-Yu S;Davis AF;Clayton DA
  26. J Biol Sci v.1 Transcription and export of RNase MRP RNA in Xenopus laevis oocytes Jeong-Yu S
  27. Proc Natl Acad Sci USA v.77 Localization of mitochondria in living cells with rhodamine 123 Johnson LV;Walsh ML;Chen LB
  28. Genes & Dev v.5 Nuclear RNase MRP processes RNA at multiple discrete sites: interaction with an upstream G-Box is required for subsequent downstream cleavages Karwan R;Bennett JL;Clayton DA
  29. Gene & Dev v.11 RNase MRP correctly cleaves a novel R loop aat the mitochondrial DNA leading-strand origin of replication Lee DY;Clayton KA
  30. Science v.272 Accurate processing of a eukaryotic precursor ribosomal RNA by Ribonuclease MRP in vitro Lygerou Z;Allmang C;Tollervey D;Seraphin B
  31. Cell Differ v.16 The number of mitochondria in Xenopus laevis ovulated oocytes Marinos E
  32. J Embryol Exp Morphol v.62 Mitochondrial number, cytochrome oxidase and succinic dehydrogenase activity in Xenopus laevis oocytes Marinos E;Billett FS
  33. Biol Cell v.60 Segregation of mitochondria in the cytoplasm of Xenopus laevis vitellogenic oocytes Mignotte F;Tourte M;Mounolou JC
  34. Methods in Cell Biology v.36 Xenopus laevis: Practical Use in Cell and Molecular Biology. In situ hybridization Okeefe HP;Melton DA;Ferreiro B;Kintner C;Kay BK(ed);Peng HB(ed)
  35. Exp Cell Res v.176 Immunolocalization of 7-2 ribonucleoprotein in the granular component of the nucleolus Reimer G;Raska I;Scheer U;Tan EM
  36. Biol Cell v.57 Mitochondrial analysis in living cells: the use of rhodamine 123 and flow cytometry Ronot X;Benel L;Adolphe M;Mounolou JC
  37. Mol Cell Biol v.13 Nuclear RNase MRP is required for correct processing of pre-5.8S rRNA in Saccharomyces cerevisiae Schmitt ME;Clayton DA
  38. Biol Cell v.34 Heterogenous distribution and replication activity of mitochondria in Xenopus laevis oocytes Tourte M;Mignotte F; Mounolou JC
  39. Dev Biol v.56 Accumulation of mitochondrial DNA during oogenesis in Xenopus laevis Webb AC;Smith LD
  40. Cell v.32 Nucleoplasmic distribution of snRNPs and stockpiled snRNA-binding proteins during oogenesis and early development in Xenopus laevis Zeller R;Nyffenegger T;de Robertis EM