• English
    • svenska
  • svenska 
    • English
    • svenska
  • Logga in
Redigera dokument 
  •   Startsida
  • Sahlgrenska Academy / Sahlgrenska akademin
  • Institute of Biomedicine / Institutionen för biomedicin
  • Doctoral Theses / Doktorsavhandlingar Institutionen för biomedicin
  • Redigera dokument
  •   Startsida
  • Sahlgrenska Academy / Sahlgrenska akademin
  • Institute of Biomedicine / Institutionen för biomedicin
  • Doctoral Theses / Doktorsavhandlingar Institutionen för biomedicin
  • Redigera dokument
JavaScript is disabled for your browser. Some features of this site may not work without it.

Computational identification of non-coding RNAs

Sammanfattning
A large amount of genomic information is now becoming available. Suitable bioinformatic tools to organize and analyze this vast amount of information are therefore important. In the case of protein genes, the majority of these may be correctly identified using standard search methods that are based on sequence alignment. However, a different problem is presented when analysing non-coding RNA genes, since for their identification it is essential to take into consideration secondary structure features. Secondary structure is not only important for non-coding RNA genes, but it is also important in the regulation of gene expression. This work is concerned with the development of methods for ncRNA prediction and the application of these methods to identify specific ncRNA families. In a variety of organisms we report on several ncRNA sequences not previously reported. These novel RNA sequences make it possible to better predict the structure of these RNAs as well as to better understand their evolution and function. To further understand the structure and evolution of the RNases P and MRP we also analyzed the protein composition of these enzymes. Together, these new predictions aid to better understand the structure, function and evolution of RNase P and MRP.
Delarbeten
I. Identification and analysis of ribonuclease P and MRP RNA in a broad range of eukaryotes. Paul Piccinelli, Magnus Alm Rosenblad, Tore Samuelsson. Nucleic Acids Res. 2005 Aug 8;33(14):4485-95.
 
II. Inventory and analysis of the protein subunits of the ribonucleases P and MRP provides further evidence of homology between the yeast and human enzymes. Magnus Alm Rosenblad, Marcela Dávila López, Paul Piccinelli and Tore Samuelsson. Nucleic Acids Res. 2006 Sep 34(18):5145-5156.
 
III. Evolution of the iron responsive element. Paul Piccinelli and Tore Samuelsson. Submitted for publication.
 
IV. Hunting for non-coding RNA genes in yeast. Paul Piccinelli, Jonathan Esguerra, Anders Blomberg and Tore Samuelsson. In manuscript.
 
Examinationsnivå
Doctor of Philosophy (Medicine)
Universitet
Göteborg University. Sahlgrenska Academy
Institution
Inst of Biomedicine. Dept of Medical Biochemistry and Cell Biology
E-post
paul.piccinelli@medkem.gu.se
URL:
http://hdl.handle.net/2077/886
Samlingar
  • Doctoral Theses / Doktorsavhandlingar Institutionen för biomedicin
  • Doctoral Theses from Sahlgrenska Academy
  • Doctoral Theses from University of Gothenburg / Doktorsavhandlingar från Göteborgs universitet
Fil(er)
Frame story (434.1Kb)
Spikblad (31.60Kb)
Datum
2007-01-12
Författare
Piccinelli, Paul
Nyckelord
RNase P
RNase MRP
IRE
non-coding RNA
secondary structure
Publikationstyp
Doctoral thesis
ISBN
978-91-628-7056-0 (91-628-7056-0)
Språk
eng
Metadata
Visa fullständig post

DSpace software copyright © 2002-2016  DuraSpace
gup@ub.gu.se | Teknisk hjälp
Theme by 
Atmire NV
 

 

Visa

VisaSamlingarI datumordningFörfattareTitlarNyckelordDenna samlingI datumordningFörfattareTitlarNyckelord

Mitt konto

Logga inRegistrera dig

DSpace software copyright © 2002-2016  DuraSpace
gup@ub.gu.se | Teknisk hjälp
Theme by 
Atmire NV