Literature DB >> 3511854

Partial reassembly of yeast 60 S ribosomal subunits in vitro following controlled dissociation under nondenaturing conditions.

J C Lee, R Anderson.   

Abstract

Previously it has been shown that 12 of the yeast ribosomal proteins were extractable from 60 S subunits under a specific nondenaturing condition [J. C. Lee, R. Anderson, Y. C. Yeh, and P. Horowitz (1985) Arch. Biochem. Biophys. 237, 292-299]. In the present paper, we showed that these proteins could be reassembled with the corresponding protein-deficient core particles to form biologically active ribosomal subunits. Effects of time, temperature, and varying concentrations of monovalent cations, divalent cations, cores, and ribosomal proteins on reconstitution were examined. Reconstitution was determined by binding of radiolabeled proteins to the nonradiolabeled cores as well as activity for polypeptide synthesis in a cell-free protein-synthesizing system. The optimal conditions for reconstitution were established. Whereas the core particles were about 10-20% as active as native 60 S subunits in an in vitro yeast cell-free protein-synthesizing system, the reconstituted particles were 80% as active. The activity of the reconstituted particles was proportional to the amount of extracted proteins added to the reconstitution mixture. About 55 +/- 7% of the core particles recombined with the extracted proteins to form reconstituted particles. These reconstituted particles cosedimented with native 60 S subunits in glycerol gradients and contained all of the 12 extractable proteins.

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Year:  1986        PMID: 3511854     DOI: 10.1016/0003-9861(86)90211-0

Source DB:  PubMed          Journal:  Arch Biochem Biophys        ISSN: 0003-9861            Impact factor:   4.013


  6 in total

1.  Qsr1p, a 60S ribosomal subunit protein, is required for joining of 40S and 60S subunits.

Authors:  D P Eisinger; F A Dick; B L Trumpower
Journal:  Mol Cell Biol       Date:  1997-09       Impact factor: 4.272

2.  Heterologous complementation reveals that mutant alleles of QSR1 render 60S ribosomal subunits unstable and translationally inactive.

Authors:  F A Dick; B L Trumpower
Journal:  Nucleic Acids Res       Date:  1998-05-15       Impact factor: 16.971

3.  Ribosomal proteins of Thermomyces lanuginosus--characterisation by two-dimensional gel electrophoresis and differential disassembly.

Authors:  J Wu; D R Beniac; G Harauz
Journal:  Mol Cell Biochem       Date:  1995-02-09       Impact factor: 3.396

4.  Disassembly and reconstitution of yeast 60S ribosomal subunits.

Authors:  M A Nieto; F Hernández; E Palacián
Journal:  Mol Cell Biochem       Date:  1989-03-16       Impact factor: 3.396

Review 5.  Dicarboxylic acid anhydrides as dissociating agents of protein-containing structures.

Authors:  E Palacián; P J González; M Piñeiro; F Hernández
Journal:  Mol Cell Biochem       Date:  1990-09-21       Impact factor: 3.396

6.  Functional substitution of mouse ribosomal protein L27' for yeast ribosomal protein L29 in yeast ribosomes.

Authors:  G Fleming; P Belhumeur; D Skup; H M Fried
Journal:  Proc Natl Acad Sci U S A       Date:  1989-01       Impact factor: 11.205

  6 in total

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