Literature DB >> 2105945

The mitotic apparatus-associated 51-kDa protein from sea urchin eggs is a GTP-binding protein and is immunologically related to yeast polypeptide elongation factor 1 alpha.

K Ohta1, M Toriyama, M Miyazaki, H Murofushi, S Hosoda, S Endo, H Sakai.   

Abstract

We investigated the biochemical characteristics of the 51-kDa protein that is a major mitotic apparatus-associated basic protein of sea urchin eggs (Toriyama, M., Ohta, K., Endo, S., and Sakai, H. (1988) Cell Motil. Cytoskeleton 9, 117-128). The amino acid composition of the 51-kDa protein was apparently different from those of tubulin, actin, histones, and myelin basic protein; yet it was similar to those of polypeptide elongation factors 1 alpha (EF-1 alpha). In addition, antibody to EF-1 alpha from yeast cross-reacted with the 51-kDa protein. [3H] GTP binding activity was detected in the phosphocellulose-purified fraction (PC fraction) which predominantly contained the 51-kDa protein and was shown to be specific to GTP, GDP, guanylyl imidodiphosphate, and ITP. Photo-affinity labeling using [alpha-32P]8-azidoguanosine triphosphate (8-azido-GTP) demonstrated that a 51-kDa polypeptide in the PC fraction specifically bound 8-azido-GTP. This GTP-binding polypeptide was bound to a GTP affinity column, could be eluted by the addition of GTP, and was immunoreactive with anti-51-kDa protein antibodies. When the PC fraction was applied to a gel filtration chromatography column, GTP binding activity was completely coeluted with the 51-kDa protein. Furthermore, the PC fraction and the gel filtration-purified fraction had EF-1 alpha activity: [14C]Phe-tRNA transferring activity to ribosomes in the presence of poly(U) and ribosome-dependent GTPase activity. The results indicate that the mitotic apparatus-associated 51-kDa protein is a GTP-binding protein and suggest that it is structurally and functionally related to yeast EF-1 alpha.

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Year:  1990        PMID: 2105945

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  32 in total

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Review 2.  eEF1A: thinking outside the ribosome.

Authors:  Maria K Mateyak; Terri Goss Kinzy
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3.  Nucleotide sequence of rabbit elongation factor 1 alpha cDNA.

Authors:  J Cavallius; W C Merrick
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Review 4.  Mechanism and regulation of eukaryotic protein synthesis.

Authors:  W C Merrick
Journal:  Microbiol Rev       Date:  1992-06

Review 5.  The role of GTP-binding proteins in mechanochemical movements of microorganisms and their potential to form filamentous structures.

Authors:  K Mikulík
Journal:  Folia Microbiol (Praha)       Date:  1998       Impact factor: 2.099

6.  Quantitative trait locus mapping of loci influencing elongation factor 1alpha content in maize endosperm.

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Journal:  Plant Physiol       Date:  2001-03       Impact factor: 8.340

7.  Isolation, characterization and mRNA expression of four cDNAs encoding translation elongation factor 1A from rice (Oryza sativa L.).

Authors:  S Kidou; S Ejiri
Journal:  Plant Mol Biol       Date:  1998-01       Impact factor: 4.076

8.  The eEFIA gene family is differentially expressed in maize endosperm.

Authors:  N P Carneiro; P A Hughes; B A Larkins
Journal:  Plant Mol Biol       Date:  1999-12       Impact factor: 4.076

9.  Function of the p86 subunit of eukaryotic initiation factor (iso)4F as a microtubule-associated protein in plant cells.

Authors:  C L Bokros; J D Hugdahl; H H Kim; V R Hanesworth; A van Heerden; K S Browning; L C Morejohn
Journal:  Proc Natl Acad Sci U S A       Date:  1995-07-18       Impact factor: 11.205

10.  Cytoskeletal proteins are coordinately increased in maize genotypes with high levels of eEF1A.

Authors:  Jose A Lopez-Valenzuela; Bryan C Gibbon; David R Holding; Brian A Larkins
Journal:  Plant Physiol       Date:  2004-07-09       Impact factor: 8.340

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