Isolation and characterization of the fission yeast gene Sprpa12+ reveals that the conserved C-terminal zinc-finger region is dispensable for the function of its product

被引:7
作者
Imazawa Y. [1 ]
Imai K. [1 ,2 ]
Yao Y. [1 ]
Yamamoto K. [2 ,3 ]
Hisatake K. [1 ]
Muramatsu M. [1 ]
Nogi Y. [1 ]
机构
[1] Department of Biochemistry, Saitama Medical School, Moroyama, Iruma-Gun, Saitama
[2] CREST, Japan Science and Technology Corporation, Higasiikebukuro, Toshimaku, Tokyo
[3] Department of Oncology, Nagasaki University, School of Medicine, Sakamoto, Nagasaki
关键词
RNA polyme rase I Zinc-finger Interspecific complementation; Schizosaccharomyces pombe;
D O I
10.1007/s004380000375
中图分类号
学科分类号
摘要
RNA polymerase I of Saccharomyces cerevisiae contains a small subunit, A12.2, encoded by RPA12, that was previously shown to be involved in the assembly and/or stabilization of the largest subunit, A190, of RNA polymerase I. To examine whether an equivalent subunit is present in another eukaryotic RNA polymerase I, we have cloned a Schizosaccahromyces pombe cDNA that is able to complement the rpa12 mutation in S. cerevisiae. The gene, named Sprpa12+, encodes a polypeptide of 119 amino acids that shows 55% identity to S. cerevisiae A12. 2 over its entire length, including two zinc-finger motifs. Disruption of the chromosomal Sprpa12+ gene shows that it is required for growth at higher temperatures but not at lower temperatures. Expression of Sprpa190+/nucl+, which encodes the largest subunit of the S. pombe RNA polymerase I, from a multicopy plasmid can partially suppress the growth defect of the Sprpa12 disruptant at higher temperatures. These findings suggest that A12.2 subunit is functionally and structurally conserved between S. cerevisiae and S. pombe. Finally, the analysis of mutants suggests that SpRPA12 requires the zinc-finger domain in the N-terminal region but not the one in the C-terminal region for its function.
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页码:852 / 859
页数:7
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共 23 条
  • [1] Alfa C., Fantes P., Hyams J., McLeod M., Warbrick E., Experiments with fission yeast: A laboratory course manual, (1993)
  • [2] Awrey D.E., Weilbaecher R.G., Hemming S.A., Orlicky S.M., Kane C.M., Edwards A.M., Transcription elongation through DNA arrest sites: A multistep process involving both RNA polymerase II subunit RPB9 and TFIIS, J Biol Chem, 272, pp. 14747-14745, (1997)
  • [3] Chedin S., Riva M., Schultz P., Sentenac A., Carles C., The RNA cleavage activity of RNA polymerase III is mediated by an essential TFIIS-like subunit and is important for transcription termination, Genes Dev, 12, pp. 3857-3871, (1998)
  • [4] D'Enfert C., Gensse M., Gaillardin C., Fission yeast and a plant have functional homologues of the Sar1 and Sec12 proteins involved in ER to Golgi traffic in budding yeast, EMBO J, 11, pp. 4205-4211, (1992)
  • [5] Dequard-Chablat M., Riva M., Carles C., Sentenac A., RPC19, the gene for a subunit common to yeast RNA polymerases A(I) and C(III), J Biol Chem, 266, pp. 15300-15307, (1991)
  • [6] Hirano T., Konoha G., Toda T., Yanagida M., Essential roles of the RNA polymerase I largest subunit and DNA topoisomerases in the formation of fission yeast nucleolus, J Cell Biol, 108, pp. 243-253, (1989)
  • [7] Imai K., Imazawa Y., Yao Y., Yamamoto K., Hisatake K., Muramatsu M., Nogi Y., The fission yeast rpa17<sup>+</sup> gene encodes a functional homolog of AC19, a subunit of RNA polymerases I and III of Saccharomyces cerevisiae, Mol Gen Genetics, 261, pp. 364-373, (1999)
  • [8] Imazawa Y., Imai K., Fukushima A., Hisatake K., Muramatsu M., Nogi Y., Isolation and characterization of the fission yeast gene rpa42<sup>+</sup>, which encodes a subunit shared by RNA polymerase I and III, Mol Gen Genet, 262, pp. 749-757, (1999)
  • [9] Mann C., Buhler J.-M., Treich I., Sentenac A., RPC40, a unique gene for a subunit shared between yeast RNA polymerases A and C, Cell, 48, pp. 627-637, (1987)
  • [10] Maundrell K., nmt1 of fission yeast: A highly transcribed gene completley repressed by thiamine, J Biol Chem, 265, pp. 10857-10864, (1990)