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Journal ArticleDOI

The 5-S RNA binding protein from yeast (Saccharomyces cerevisiae) ribosomes. Evolution of the eukaryotic 5-S RNA binding protein.

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TLDR
The results suggest that many protein binding sites for nucleic acids may share common structural features and further support the notion that the single large eukaryotic 5S RNA protein may have evolved through a fusion of genes for the multiple 5SRNA binding proteins in prokaryotes.
Abstract
The carboxyl-terminal half (CN2 fragment) of the yeast 5S RNA binding protein (YL3) retains an ability to form homogeneous ribonucleoprotein complexes with RNA although the N-terminal half (CN1) appears to confer specificity for the 5S RNA molecule [Nazar, R N, Yaguchi, M, Willick, G E, Rollin, C F and Roy, C (1979) Eur J Biochem 102, 573–582] The nucleic acid binding site in this fragment was more clearly delineated by cleaving the CN2 fragment with a variety of enzymatic and chemical reagents and further examining the ability of the products to form RNA-peptide complexes Hot acetic acid treatment produced a 47-residue subfragment (CN2-A1) which originated from the C terminus and continued to form stable ribonucleopeptide complexes The amino acid sequence of this subfragment was determined to be: -Pro-Ala-Phe-Lys-Pro-Thr-Glu-Lys50-Phe-Thr-Lys-Glu-Gln-Tyr-Ala-Ala-Glu60-Ser-Lys-Lys-Tyr-Arg-Gln-Thr-Lys-Leu-Ser70 -Lys-Gln-Gln-Arg-Ala-Ala-Arg-Val-Ala-Ala80-Lys-Ile-Ala-Ala-Leu-Ala-Gly-Gln-Gln-COOH, with 12 of the 16 basic residues in the CN2 fragment being present in this binding site The amino acid sequence of the CN2-A1 fragment bears a limited homology in both amino acid and charge distribution with histone 2B from mammals and with one of the 5S RNA binding proteins (EL25) from Escherichia coli The results suggest that many protein binding sites for nucleic acids may share common structural features and further support the notion that the single large eukaryotic 5S RNA protein may have evolved through a fusion of genes for the multiple 5S RNA binding proteins in prokaryotes

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Citations
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Journal ArticleDOI

A 5S rRNA/L5 complex is a precursor to ribosome assembly in mammalian cells.

TL;DR: The protein moiety of the 5S RNP has been identified as ribosomal protein L5, which is known to be released from ribosomes in a complex with 5S after various treatments of the 60S subunit, and indirect immunofluorescence indicates that the L5/5S complex is concentrated in the nucleolus.
Journal ArticleDOI

Yeast ribosomal protein L1 is required for the stability of newly synthesized 5S rRNA and the assembly of 60S ribosomal subunits

TL;DR: Preliminary results suggest that transcription of RPL1 is not autogenously regulated by L1, indicating that L1 is required for assembly of stable 60S ribosomal subunit assembly but not 40S ribOSomal subunits.
Journal ArticleDOI

eIF5A binds to translational machinery components and affects translation in yeast.

TL;DR: It is demonstrated that eIF-5A interacts with structural components of the 80S ribosome, as well as with the translation elongation factor 2 (eEF2).
Journal ArticleDOI

Biological significance of 5S rRNA import into human mitochondria: role of ribosomal protein MRP-L18

TL;DR: An elegant molecular conveyor is described, thanks to which 5S rRNA molecules can be specifically withdrawn from the cytosolic pool and redirected to mitochondria, bypassing the classic nucleolar reimport pathway.
Journal ArticleDOI

The primary structure of rat ribosomal protein L5. A comparison of the sequence of amino acids in the proteins that interact with 5 S rRNA.

TL;DR: The covalent structure of rat ribosomal protein L5, which associates with 5 S rRNA in the organelle, was deduced from the sequence of nucleotides in a recombinant cDNA and confirmed from the sequences of amino acids in portions of the protein.
References
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Journal ArticleDOI

The reliability of molecular weight determinations by dodecyl sulfate-polyacrylamide gel electrophoresis

TL;DR: The results show that the polyacrylamide gel electrophoresis method can be used with great confidence to determine the molecular weights of polypeptide chains for a wide variety of proteins.
Journal ArticleDOI

Spectroscopic determination of tryptophan and tyrosine in proteins.

Harold Edelhoch
- 01 Jul 1967 - 
TL;DR: A procedure is presented which strongly reduces or elimi- nates these interactions, normalizes their absorption, and consequently permits a more precise analysis of tryptophan and tyrosine in proteins.
Journal ArticleDOI

Ribosomal proteins. VII. Two-dimensional polyacrylamide gel electrophoresis for fingerprinting of ribosomal proteins.

TL;DR: A two-dimensional polyacrylamide gel system has been developed, improving the analytical separation of complex protein mixtures as obtained from ribosomes, and facilitates and accelerates considerably a number of investigations on the structure of ribosome.
Journal ArticleDOI

Hydrolysis of proteins with p-toluenesulfonic acid. Determination of tryptophan.

TL;DR: The values of tryptophan obtained were close to the expected integral values and the recoveries of all other amino acids were comparable to those observed after hydrolysis with 6 n HCl.
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