Scientific article
English

Composite Structure of the Chloroplast 23 S Ribosomal RNA Genes of Chlamydomonas reinhardii: Evolutionary and Functional Implications

Published inJournal of Molecular Biology, vol. 159, no. 3, p. 383-395
Publication date1982
Abstract

The chloroplast ribosomal unit of Chlamydomonas reinhardii displays two features which are not shared by other chloroplast ribosomal units. These include the presence of an intron in the 23 S ribosomal RNA gene and of two small genes coding for 3 S and 7 S rRNA in the spacer between the 16 S and 23 S rRNA genes (Rochaix & Malnoë, 1978). Sequencing of the 7 S and 3 S rRNAs as well as their genes and neighbouring regions has shown that: (1) the 7 S and 3 S rRNA genes are 282 and 47 base-pairs long, respectively, and are separated by a 23 base-pair A + T-rich spacer. (2) A sequence microheterogeneity exists within the 3 S RNA genes. (3) The sequences of the 7 S and 3 S rRNAs are homologous to the 5′ termini of prokaryotic and other chloroplast 23 S rRNAs, indicating that the C. reinhardii counterparts of 23 S rRNA have a composite structure. (4) The sequences of the 7 S and 3 S rRNAs are related to that of cytoplasmic 5.8 S rRNA, suggesting that these RNAs may perform similar functions in the ribosome. (5) Partial nucleotide sequence complementarity is observed between the 5′ ends of the 7 S and 3 S RNAs on one hand and the 23 S rRNA sequences which flank the ribosomal intron on the other. These data are compatible with the idea that these small rRNAs may play a role in the processing of the 23 S rRNA precursor.

Funding
  • Swiss National Science Foundation - 3.659.0.80
  • Swiss National Science Foundation - 3.664.0.80
Citation (ISO format)
ROCHAIX, Jean-David, DARLIX, Jean-Luc. Composite Structure of the Chloroplast 23 S Ribosomal RNA Genes of Chlamydomonas reinhardii: Evolutionary and Functional Implications. In: Journal of Molecular Biology, 1982, vol. 159, n° 3, p. 383–395. doi: 10.1016/0022-2836(82)90290-X
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Journal ISSN0022-2836
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