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Journal Abstract Search
363 related items for PubMed ID: 7734837
1. Experimental analysis of chromatin function in transcription control. Owen-Hughes T, Workman JL. Crit Rev Eukaryot Gene Expr; 1994; 4(4):403-41. PubMed ID: 7734837 [Abstract] [Full Text] [Related]
2. Transcription of dinucleosomal templates. Wolffe AP, Ura K. Methods; 1997 May; 12(1):10-9. PubMed ID: 9169190 [Abstract] [Full Text] [Related]
3. Rules and regulation in the primary structure of chromatin. Rando OJ, Ahmad K. Curr Opin Cell Biol; 2007 Jun; 19(3):250-6. PubMed ID: 17466507 [Abstract] [Full Text] [Related]
4. Histone H1 and the dynamic regulation of chromatin function. Brown DT. Biochem Cell Biol; 2003 Jun; 81(3):221-7. PubMed ID: 12897856 [Abstract] [Full Text] [Related]
5. Remodeling chromatin structures for transcription: what happens to the histones? Steger DJ, Workman JL. Bioessays; 1996 Nov; 18(11):875-84. PubMed ID: 8939065 [Abstract] [Full Text] [Related]
6. Review: chromatin structural features and targets that regulate transcription. Wolffe AP, Guschin D. J Struct Biol; 2000 Apr; 129(2-3):102-22. PubMed ID: 10806063 [Abstract] [Full Text] [Related]
7. The nucleosome remodeling complex, Snf/Swi, is required for the maintenance of transcription in vivo and is partially redundant with the histone acetyltransferase, Gcn5. Sudarsanam P, Cao Y, Wu L, Laurent BC, Winston F. EMBO J; 1999 Jun 01; 18(11):3101-6. PubMed ID: 10357821 [Abstract] [Full Text] [Related]
10. Simple histone acetylation plays a complex role in the regulation of gene expression. Fukuda H, Sano N, Muto S, Horikoshi M. Brief Funct Genomic Proteomic; 2006 Sep 01; 5(3):190-208. PubMed ID: 16980317 [Abstract] [Full Text] [Related]
11. Influence of linker histone H1 on chromatin remodeling. Hill DA. Biochem Cell Biol; 2001 Sep 01; 79(3):317-24. PubMed ID: 11467745 [Abstract] [Full Text] [Related]
12. Differential remodeling of the HIV-1 nucleosome upon transcription activators and SWI/SNF complex binding. Angelov D, Charra M, Seve M, Côté J, Khochbin S, Dimitrov S. J Mol Biol; 2000 Sep 15; 302(2):315-26. PubMed ID: 10970736 [Abstract] [Full Text] [Related]
13. Interaction of maize chromatin-associated HMG proteins with mononucleosomes: role of core and linker histones. Lichota J, Grasser KD. Biol Chem; 2003 Jul 15; 384(7):1019-27. PubMed ID: 12956418 [Abstract] [Full Text] [Related]
14. Retinoid receptors in health and disease: co-regulators and the chromatin connection. Minucci S, Pelicci PG. Semin Cell Dev Biol; 1999 Apr 15; 10(2):215-25. PubMed ID: 10441075 [Abstract] [Full Text] [Related]
15. Epigenetic control of ovarian function: the emerging role of histone modifications. LaVoie HA. Mol Cell Endocrinol; 2005 Nov 24; 243(1-2):12-8. PubMed ID: 16219412 [Abstract] [Full Text] [Related]
18. Continuous and widespread roles for the Swi-Snf complex in transcription. Biggar SR, Crabtree GR. EMBO J; 1999 Apr 15; 18(8):2254-64. PubMed ID: 10205178 [Abstract] [Full Text] [Related]
19. Clusters of nucleosomes containing chromosomal protein HMG-17 in chromatin. Postnikov YV, Herrera JE, Hock R, Scheer U, Bustin M. J Mol Biol; 1997 Dec 12; 274(4):454-65. PubMed ID: 9417927 [Abstract] [Full Text] [Related]
20. Linker histones versus HMG1/2: a struggle for dominance? Zlatanova J, van Holde K. Bioessays; 1998 Jul 12; 20(7):584-8. PubMed ID: 9723008 [Abstract] [Full Text] [Related] Page: [Next] [New Search]