Abstract
The nucleotide sequence G-T-Psi-C-G(A)- has previously been found in every tRNA of known sequence that is active in protein biosynthesis. An exception to this generalization is the recently sequenced initiator tRNA from yeast cytoplasm. It is now reported that cytoplasmic initiator tRNAs from wheat germ, rabbit liver, and sheep mammary gland also lack the G-T-Psi-C-G(A)- sequence. Thus: (i) nucleoside composition analyses show the absence of T in all these tRNAs; (ii) analyses of oligonucleotide fragments produced by T1 ribonuclease show the absence not only of the T-Psi-C-G(A)- sequence, but also of U-Psi-C-G(A)- or U-U-C-G(A)- sequences in such digests. The absence of G-T-Psi-C-G(A)- in the eukaryotic cytoplasmic initator tRNAs is, therefore, not simply due to lack of enzymatic modification of U to T.
MeSH Terms
Adenosine/analysis
Animals
Base Sequence
Cytidine/analysis
Cytoplasm/analysis
Cytosine Nucleotides/analysis
Electrophoresis
Escherichia coli/analysis
Female
Guanine Nucleotides/analysis
Guanosine/analysis
Liver/analysis
Mammary Glands, Animal/analysis
Nucleosides/analysis
Nucleotides/analysis
Phosphorus Isotopes
RNA, Transfer/analysis,isolation & purification
Rabbits
Saccharomyces cerevisiae/analysis
Sheep
Thymidine/analysis
Thymine Nucleotides/analysis
Triticum/analysis
Tritium
Uridine/analysis
Chemicals
Cytosine Nucleotides
Guanine Nucleotides
Nucleosides
Nucleotides
Phosphorus Isotopes
Thymine Nucleotides
Tritium
Guanosine
Cytidine
RNA, Transfer
Adenosine
Thymidine
Uridine
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Simsek M
Ziegenmeyer J
Heckman J
Rajbhandary U L
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28 references, click to expand
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