Flanking Sequences Modulate the Cell Specificity of M-CAT Elements
- 1 July 1996
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 16 (7), 3742-3755
- https://doi.org/10.1128/mcb.16.7.3742
Abstract
M-CAT elements mediate both muscle-specific and non-muscle-specific transcription. We used artificial promoters to dissect M-CAT elements derived from the cardiac troponin T promoter, whose regulation is highly striated muscle specific. We show that muscle-specific M-CAT-dependent expression requires two distinct components: the core heptameric M-CAT motif (5'-CATTCCT-3'), which constitutes the canonical binding site for TEF-1-related proteins, and specific sequences immediately flanking the core motif that bind an additional factor(s). These factors are found in higher-order M-CAT DNA-protein complexes with TEF-1 proteins. Non-muscle-specific promoters are produced when the sequences flanking the M-CAT motif are removed or modified to match those of non-muscle-specific promoters such as the simian virus 40 promoter. Moreover, a mutation of the 5'-flanking region of the cardiac troponin T M-CAT-1 element upregulated expression in nonmuscle cells. That mutation also disrupts a potential E box that apparently does not bind myogenic basic helix-loop-helix proteins. We propose a model in which M-CAT motifs are potentially active in many cell types but are modulated through protein binding to specific flanking sequences. In nonmuscle cells, these flanking sequences bind a factor(s) that represses M-CAT-dependent activity. In muscle cells, on the other hand, the factor(s) binding to these flanking sequences contributes to both the cell specificity and the overall transcriptional strength of M-CAT-dependent promoters.Keywords
This publication has 76 references indexed in Scilit:
- The Role of Transcription Enhancer Factor-1 (TEF-1) Related Proteins in the Formation of M-CAT Binding Complexes in Muscle and Non-muscle TissuesPublished by Elsevier ,1996
- DTEF-1, a Novel Member of the Transcription Enhancer Factor-1 (TEF-1) Multigene FamilyPublished by Elsevier ,1996
- Identification of a Novel Regulatory Element in the c-mos Locus That Activates Transcription in Somatic CellsBiochemical and Biophysical Research Communications, 1995
- Plasticity of Vascular Smooth Muscle α-Actin Gene TranscriptionJournal of Biological Chemistry, 1995
- The helix-loop-helix gene E2A is required for B cell formationCell, 1994
- Two adjacent E box elements and a M‐CAT box are involved in the muscle‐specific regulation of the rat acetylcholine receptor β subunit geneEuropean Journal of Biochemistry, 1993
- Helix-loo-helix proteins in the regulation of immunoglobulin gene transcriptionImmunology Today, 1992
- Cooperativity and hierarchical levels of functional organization in the SV40 enhancerCell, 1988
- The HeLa cell protein TEF-1 binds specifically and cooperatively to two SV40 enhancer motifs of unrelated sequenceCell, 1988
- Cell-type specific protein binding to the enhancer of simian virus 40 in nuclear extractsNature, 1986