Mol Cell Biol. 1992 January; 12(1): 68-81
Characterization of the DNA target site for the yeast ARGR regulatory complex, a sequence able to mediate repression or induction by arginine.
M De Rijcke,
S Seneca,
B Punyammalee,
N Glansdorff and
M Crabeel
Erfelijkheidsleer en Microbiologie, Vrije Universiteit Brussel, Belgium.
ABSTRACT
We have determined the sequences and positions of the cis elements required for proper functioning of the ARG3 promoter and proper arginine-specific control. A TATA box located 100 nucleotides upstream of the transcription start was shown to be essential for ARG3 transcription. Two sequences involved in normal arginine-mediated repression lie immediately downstream of the TATA box: an essential one (arginine box 1 [AB1]) and a secondary one (arginine box 2 [AB2]). AB1 was defined by saturation mutagenesis and is an asymmetrical sequence. A stringently required CGPu motif in AB1 is conserved in all known target sites of C6 zinc cluster DNA-binding proteins, leading us to propose that AB1 is the binding site of ARGRII, another member of the C6 family. The palindromic AB2 sequence is suggested, on the basis of published data, to be the binding site of ARGRI, possibly in heterodimerization with MCM1. AB2 and AB1 correspond respectively to the 5' and 3' halves of two adjacent similar sequences of 29 bp that appear to constitute tandem operators. Indeed, mutations increasing the similarity of the other halves with AB1 and AB2 cause hyperrepression. To mediate repression, the operator must be located close to the transcription initiation region. It remains functional if the TATA box is moved downstream of it but becomes inoperative in repression when displaced to a far-upstream position where it mediates an arginine and ARGR-dependent induction of gene expression. The ability of the ARG3 operator to act either as an operator or as an upstream activator sequence, depending on its location, and the functional organization of the anabolic and catabolic arginine genes suggest a simple model for arginine regulation in which an activator complex can turn into a repressor when able to interfere sterically with the process of transcription initiation.
Mol Cell Biol. 1992 January; 12(1): 68-81
This article has been cited by other articles:
-
Morozov, A. V., Siggia, E. D.
(2007). Connecting protein structure with predictions of regulatory sites. Proc. Natl. Acad. Sci. USA
104: 7068-7073
[Abstract]
[Full Text]
-
Yu, H., Gerstein, M.
(2006). Colloquium Papers: Genomic analysis of the hierarchical structure of regulatory networks. Proc. Natl. Acad. Sci. USA
103: 14724-14731
[Abstract]
[Full Text]
-
Yoon, S., Govind, C. K., Qiu, H., Kim, S.-j., Dong, J., Hinnebusch, A. G.
(2004). Recruitment of the ArgR/Mcm1p repressor is stimulated by the activator Gcn4p: A self-checking activation mechanism. Proc. Natl. Acad. Sci. USA
101: 11713-11718
[Abstract]
[Full Text]
-
Turner, S. D., Ricci, A. R., Petropoulos, H., Genereaux, J., Skerjanc, I. S., Brandl, C. J.
(2002). The E2 Ubiquitin Conjugase Rad6 Is Required for the ArgR/Mcm1 Repression of ARG1 Transcription. Mol. Cell. Biol.
22: 4011-4019
[Abstract]
[Full Text]
-
Odom, A. R., Stahlberg, A., Wente, S. R., York, J. D.
(2000). A Role for Nuclear Inositol 1,4,5-Trisphosphate Kinase in Transcriptional Control. Science
287: 2026-2029
[Abstract]
[Full Text]
-
Park, H.-D., Scott, S., Rai, R., Dorrington, R., Cooper, T. G.
(1999). Synergistic Operation of the CAR2 (Ornithine Transaminase) Promoter Elements in Saccharomyces cerevisiae. J. Bacteriol.
181: 7052-7064
[Abstract]
[Full Text]
-
Ozcan, S., Johnston, M.
(1999). Function and Regulation of Yeast Hexose Transporters. Microbiol. Mol. Biol. Rev.
63: 554-569
[Abstract]
[Full Text]
-
Masloff, S., Pöggeler, S., Kück, U.
(1999). The pro1+ Gene From Sordaria macrospora Encodes a C6 Zinc Finger Transcription Factor Required for Fruiting Body Development. Genetics
152: 191-199
[Abstract]
[Full Text]
-
Bailey, L. A., Ebbole, D. J.
(1998). The fluffy Gene of Neurospora crassa Encodes a Gal4p-Type C6 Zinc Cluster Protein Required for Conidial Development. Genetics
148: 1813-1820
[Abstract]
[Full Text]
-
Marmorstein, R, Harrison, S C
(1994). Crystal structure of a PPR1-DNA complex: DNA recognition by proteins containing a Zn2Cys6 binuclear cluster.. Genes Dev.
8: 2504-2512
[Abstract]
-
Reece, R., Ptashne, M
(1993). Determinants of binding-site specificity among yeast C6 zinc cluster proteins. Science
261: 909-911
[Abstract]
Copyright © 1992 by the American Society for Microbiology. All rights reserved.