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PMID: 1328868 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Inactivation of the protein phosphatase 2A regulatory subunit A results in morphological and transcriptional defects in Saccharomyces cerevisiae.

Molecular and cellular biology ·Vol. 12 ·No. 11 ·1992-11-00 ·Pages 4946-59

van Zyl W, Huang W, Sneddon AA, Stark M, Camier S, Werner M, Marck C, Sentenac A, Broach JR

Abstract

We have determined that TPD3, a gene previously identified in a screen for mutants defective in tRNA biosynthesis, most likely encodes the A regulatory subunit of the major protein phosphatase 2A species in the yeast Saccharomyces cerevisiae. The predicted amino acid sequence of the product of TPD3 is highly homologous to the sequence of the mammalian A subunit of protein phosphatase 2A. In addition, antibodies raised against Tpd3p specifically precipitate a significant fraction of the protein phosphatase 2A activity in the cell, and extracts of tpd3 strains yield a different chromatographic profile of protein phosphatase 2A than do extracts of isogenic TPD3 strains. tpd3 deletion strains generally grow poorly and have at least two distinct phenotypes. At reduced temperatures, tpd3 strains appear to be defective in cytokinesis, since most cells become multibudded and multinucleate following a shift to 13 degrees C. This is similar to the phenotype obtained by overexpression of the protein phosphatase 2A catalytic subunit or by loss of CDC55, a gene that encodes a protein with homology to a second regulatory subunit of protein phosphatase 2A. At elevated temperatures, tpd3 strains are defective in transcription by RNA polymerase III. Consistent with this in vivo phenotype, extracts of tpd3 strains fail to support in vitro transcription of tRNA genes, a defect that can be reversed by addition of either purified RNA polymerase III or TFIIIB. These results reinforce the notion that protein phosphatase 2A affects a variety of biological processes in the cell and provide an initial identification of critical substrates for this phosphatase.

Related Genes
MeSH Terms
Amino Acid Sequence Base Sequence Cell Division/genetics DNA, Fungal Molecular Sequence Data Mutagenesis, Insertional Phosphoprotein Phosphatases/genetics,physiology Protein Phosphatase 2 RNA Polymerase III/metabolism Restriction Mapping Saccharomyces cerevisiae/enzymology,genetics,ultrastructure Sequence Homology, Amino Acid Substrate Specificity Temperature Transcription, Genetic/genetics,physiology
Chemicals
DNA, Fungal RNA Polymerase III Phosphoprotein Phosphatases Protein Phosphatase 2
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
van Zyl W
Department of Molecular Biology, Princeton University, New Jersey 08544.
Huang W
Sneddon A A
Stark M
Camier S
Werner M
Marck C
Sentenac A
Broach J R
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Article Info
Journal
Molecular and cellular biology
Abbr.
Mol Cell Biol
ISSN
0270-7306
Published
1992-11-00
Pages
4946-59
Language
English
Region
United States
NLM ID
8109087
PMCID
PMC360427
Subset
IM
Grants
NCI NIH HHS · CA41806 · United States
Databases
GENBANK
M98389
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