
We have investigated the structure of oocyte and somatic 5S ribosomal RNA and of 5S RNA encoding genes in Xenopus tropicalis. The sequences of the two 5S RNA families differ in four positions, but only one of these substitutions, a C to U transition in position 79 within the internal control region of the corresponding 5S RNA encoding genes, is a distinguishing characteristic of all Xenopus somatic and oocyte 5S RNAs characterized to date, including those from Xenopus laevis and Xenopus borealis. 5S RNA genes in Xenopus tropicalis are organized in clusters of multiple repeats of a 264 base pair unit; the structural and functional organization of the Xenopus tropicalis oocyte 5S gene is similar to the somatic but distinct from the oocyte 5S DNA in Xenopus laevis and Xenopus borealis. A comparative sequence analysis reveals the presence of a strictly conserved pentamer motif AAAGT in the 5'-flanking region of Xenopus 5S genes which we demonstrate in a separate communication to serve as a binding signal for an upstream stimulatory factor.
Base Sequence, Xenopus, Molecular Sequence Data, RNA, Ribosomal, 5S, Biological Evolution, DNA, Ribosomal, Genes, RNA, Ribosomal, Multigene Family, Oocytes, Animals, Nucleic Acid Conformation, Cloning, Molecular
Base Sequence, Xenopus, Molecular Sequence Data, RNA, Ribosomal, 5S, Biological Evolution, DNA, Ribosomal, Genes, RNA, Ribosomal, Multigene Family, Oocytes, Animals, Nucleic Acid Conformation, Cloning, Molecular
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