Abstract
The yeast transcriptional regulator Rap1p binds to the DNA consensus sequence ACACCCAYACAYYY. We have previously shown that DNA-binding sites in which all four Y (Y=T or C) positions were Ts (UASrpg sequences) synergized more efficiently to activate transcription than sequences in which all Ys were Cs (telomere sequences) [F.-Z. Idrissi, J. Fernández-Larrea and B. Piña (1998) J. Mol. Biol. 284, 925-935]. Here we provide evidence that the DNA consensus sequence for Rap1p behaves as a combination of two ACAYYY half-sites with different functionality, the presence of Ts in the second half-site being the determinant for the transcriptional behaviour of the UASrpg sequences. DNA structure in the different complexes with Rap1p varied from being relatively uniform to appear rather distorted, this also being dependent on the presence of Ts in the second half-site. These distortions did not cause sharp bends or kinks in the DNA molecule. Computer analysis suggests that high-affinity binding of Rap1p to UASrpg sequences requires a rearrangement of the C-terminal Myb domain of the protein. We propose that the structural alterations in Rap1p-DNA complexes, both in the DNA and in the protein, affect the transcription potential of the complex in an allosteric manner. We also propose that the dimeric nature of the Rap1 DNA-binding domain is a key structural feature that explains the disparate functions of its DNA-binding sites in vivo.
MeSH Terms
Base Sequence
Binding Sites
Computer Simulation
DNA, Recombinant/chemistry,metabolism
DNA-Binding Proteins/metabolism
Nucleic Acid Conformation
Transcription Factors/metabolism
Chemicals
DNA, Recombinant
DNA-Binding Proteins
Transcription Factors
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Idrissi F Z
Centre d'Investigació i Desenvolupament, Consejo Superior de Investigaciones Cient approximately íficas, Jordi Girona 18, 08034 Barcelona, Spain.
Piña B
References (28)
28 references, click to expand
-
Pyrimidine-specific chemical reactions useful for DNA sequencing.
Nucleic Acids Res. 1980 Oct 24;8(20):4613-9
PMID: 7443522
-
DNA-binding requirements of the yeast protein Rap1p as selected in silico from ribosomal protein gene promoter sequences.
Bioinformatics. 1999 Apr;15(4):267-77
PMID: 10320394
-
Each of three "TATA elements" specifies a subset of the transcription initiation sites at the CYC-1 promoter of Saccharomyces cerevisiae.
Proc Natl Acad Sci U S A. 1985 Dec;82(24):8562-6
PMID: 3001709
-
Analysis of upstream activation sites of yeast ribosomal protein genes.
Nucleic Acids Res. 1987 Aug 11;15(15):6037-48
PMID: 3627978
-
Asymmetric DNA bending induced by the yeast multifunctional factor TUF.
J Biol Chem. 1989 May 25;264(15):8463-6
PMID: 2656680
-
Mutational analysis of the upstream activation site of yeast ribosomal protein genes.
Curr Genet. 1989 Apr;15(4):247-51
PMID: 2752447
-
Bending of DNA by gene-regulatory proteins: construction and use of a DNA bending vector.
Gene. 1989 Dec 21;85(1):15-23
PMID: 2533576
-
A yeast telomere binding activity binds to two related telomere sequence motifs and is indistinguishable from RAP1.
Curr Genet. 1989 Oct;16(4):225-39
PMID: 2697465
-
Efficient expression of the Saccharomyces cerevisiae glycolytic gene ADH1 is dependent upon a cis-acting regulatory element (UASRPG) found initially in genes encoding ribosomal proteins.
Gene. 1990 May 31;90(1):79-85
PMID: 2199331
-
Contacts between the factor TUF and RPG sequences.
J Biol Chem. 1990 Aug 25;265(24):14669-74
PMID: 2201690
-
The role of RAP1 in the regulation of the MAT alpha locus.
Mol Cell Biol. 1991 Feb;11(2):1069-79
PMID: 1990267
-
Getting started with yeast.
Methods Enzymol. 1991;194:3-21
PMID: 2005794
-
Distortion of the DNA double helix by RAP1 at silencers and multiple telomeric binding sites.
J Mol Biol. 1993 May 20;231(2):293-310
PMID: 8510148
-
Use of a selection technique to identify the diversity of binding sites for the yeast RAP1 transcription factor.
Nucleic Acids Res. 1994 Jan 25;22(2):124-30
PMID: 8121795
-
The yeast telomere-binding protein RAP1 binds to and promotes the formation of DNA quadruplexes in telomeric DNA.
EMBO J. 1994 May 15;13(10):2411-20
PMID: 8194531
-
The positioning of yeast telomeres depends on SIR3, SIR4, and the integrity of the nuclear membrane.
Cold Spring Harb Symp Quant Biol. 1993;58:733-46
PMID: 7956091
-
Influence of a steroid receptor DNA-binding domain on transcriptional regulatory functions.
Genes Dev. 1994 Dec 1;8(23):2842-56
PMID: 7995522
-
RAP1: a protean regulator in yeast.
Trends Genet. 1994 Nov;10(11):408-12
PMID: 7809947
-
DNA bending by thyroid hormone receptor: influence of half-site spacing and RXR.
Nucleic Acids Res. 1995 Mar 11;23(5):811-8
PMID: 7708497
-
The oestrogen receptor recognizes an imperfectly palindromic response element through an alternative side-chain conformation.
Structure. 1995 Feb 15;3(2):201-13
PMID: 7735836
-
The nuclear receptor superfamily: the second decade.
Cell. 1995 Dec 15;83(6):835-9
PMID: 8521507
-
The crystal structure of the DNA-binding domain of yeast RAP1 in complex with telomeric DNA.
Cell. 1996 Apr 5;85(1):125-36
PMID: 8620531
-
Structure of the B-Myb DNA-binding domain in solution and evidence for multiple conformations in the region of repeat-2 involved in DNA binding: implications for sequence-specific DNA binding by Myb proteins.
Eur J Biochem. 1996 Feb 1;235(3):721-35
PMID: 8654422
-
Recognition of telomeric DNA.
Trends Biochem Sci. 1997 Feb;22(2):43-7
PMID: 9048479
-
Estrogen response elements function as allosteric modulators of estrogen receptor conformation.
Mol Cell Biol. 1998 Apr;18(4):1927-34
PMID: 9528764
-
Allosteric effects of DNA on transcriptional regulators.
Nature. 1998 Apr 30;392(6679):885-8
PMID: 9582068
-
Structural and functional heterogeneity of Rap1p complexes with telomeric and UASrpg-like DNA sequences.
J Mol Biol. 1998 Dec 11;284(4):925-35
PMID: 9837716
-
Heme regulates transcription of the CYC1 gene of S. cerevisiae via an upstream activation site.
Cell. 1983 Apr;32(4):1279-86
PMID: 6301690