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Gene expression
LE WE PMID CA
Gene expression2384Genexpression

Chromosome (BASKET)

FoxA1 HNF3alpha

Gene expression

Genetic code

Genetics (Enhancer)

Genetics (SAGE)

Histone methylase

NFKB

Nucleus

PCBP1

PCBP2

PCBP3

PCBP4

Promoter

Receptor (Androgen)

Receptor (Estrogen)

Reporter protein

RNA (Binding proteins)

RNA (hnRNA)

RNA (lncRNA)

RNA (MicroRNA)

RNA (nRNA BASKET)

Structure det. tissue level to single molecule localization

2005  
1
Long-distance interactions between enhancers and promoters.
[15978032] FEBS J 272(13): 3253-9 (2005)
2005  
2
Constructing transcriptional regulatory networks.
[15998805] Genes Dev 19(13): 1499-511 (2005)
2001  
3
Transcriptional repression: the long and the short of it.
[11691830] Genes Dev 15(21): 2786-96 (2001)
2001  
4
Core promoters: active contributors to combinatorial gene regulation.
[11581155] Genes Dev 15(19): 2503-8 (2001)
2000  
5
Orchestrated response: a symphony of transcription factors for gene control.
[11040209] Genes Dev 14(20): 2551-69 (2000)
1999  
6
Looping versus linking: toward a model for long-distance gene activation.
[10521391] Genes Dev 13(19): 2465-77 (1999)
1996  
7
Repression and activation by multiprotein complexes that alter chromatin structure.
[8608939] Genes Dev 10(8): 905-20 (1996)
2006  
8
Advances in the genetics and epigenetics of gene regulation and human disease.
[16934107] Genome Biol 7(8): 325 (2006)
2003  
9
Understanding the language of gene regulation.
[12844355] Genome Biol 4(7): 327 (2003)
2004  
10
Biological control through regulated transcriptional coactivators.
[15479634] Cell 119(2): 157-67 (2004)
2002  
11
Specificity of gene regulation.
[12015975] Cell 109(3): 267-70 (2002)
2002  
12
Gene-specific regulation by general translation factors.
[11909525] Cell 108(4): 545-56 (2002)
2002  
13
The contribution of nuclear compartmentalization to gene regulation.
[11909522] Cell 108(4): 513-21 (2002)
2002  
14
Combinatorial control of gene expression by nuclear receptors and coregulators.
[11909518] Cell 108(4): 465-74 (2002)
2002  
15
A unified theory of gene expression.
[11909516] Cell 108(4): 439-51 (2002)
1999  
16
Fundamentally different logic of gene regulation in eukaryotes and prokaryotes.
[10412974] Cell 98(1): 1-4 (1999)
1999  
17
Global transcription regulators of eukaryotes.
[10102264] Cell 96(6): 759-67 (1999)
1998  
18
Eukaryotic transcription: an interlaced network of transcription factors and chromatin-modifying machines.
[9476891] Cell 92(3): 307-13 (1998)
1998  
19
Small-molecule-based strategies for controlling gene expression.
[9653545] Chem Biol 5(6): R129-45 (1998)
2001  
20
Cooperativity in transcriptional control.
[11413011] Curr Biol 11(7): R250-2 (2001)
1998  
21
Transcriptional control: repression by local chromatin modification.
[9768353] Curr Biol 8(19): R683-6 (1998)
1998  
22
Transcription: activation by cooperating conformations.
[9742392] Curr Biol 8(17): R616-8 (1998)
2008  
23
Signal-induced repression: the exception or the rule in developmental signaling?
[18606137] Dev Cell 15(1): 11-22 (2008)
2008  
24
Intron delays and transcriptional timing during development.
[18331713] Dev Cell 14(3): 324-30 (2008)
2007  
25
Nuclear receptor coregulators: judges, juries, and executioners of cellular regulation.
[17803935] Mol Cell 27(5): 691-700 (2007)
2006  
26
Rheostat control of gene expression by metabolites.
[17018288] Mol Cell 24(1): 1-11 (2006)
2001  
27
Common themes in mechanisms of gene silencing.
[11583612] Mol Cell 8(3): 489-98 (2001)
2005  
28
Long-range control of gene expression: emerging mechanisms and disruption in disease.
[15549674] Am J Hum Genet 76(1): 8-32 (2005)
2007  
29
Bending and breaking the code: dynamic changes in promoter integrity may underlie a new mechanism regulating gene expression.
[16920887] Am J Physiol Lung Cell Mol Physiol 292(1): L1-3 (2007)
2009  
30
Long antisense non-coding RNAs function to direct epigenetic complexes that regulate transcription in human cells.
[19633414] Epigenetics 4(5): 296-301 (2009)
1998  
31
Post-transcriptional gene regulatory mechanisms in eukaryotes: an overview.
[9691970] J Endocrinol 157(3): 361-71 (1998)
2001  
32
Nuclear post-transcriptional control of gene expression.
[11564598] J Mol Endocrinol 27(2): 123-31 (2001)
2008  
33
Coactivators and corepressors: what's in a name?
[18701638] Mol Endocrinol 22(10): 2213-4 (2008)
2007  
34
Coregulators: from whence came these "master genes".
[17284664] Mol Endocrinol 21(5): 1009-13 (2007)
2006  
35
Changes in attitude, changes in latitude: nuclear receptors remodeling chromatin to regulate transcription.
[16002433] Mol Endocrinol 20(1): 1-13 (2006)
2010  
36
Visualization of gene expression in the live subject using the Na/I symporter as a reporter gene: applications in biotherapy.
[19814733] Br J Pharmacol 159(4): 761-71 (2010)
2010  
37
2010  
38
2009  
39
Control of NF-kappaB-dependent transcriptional responses by chromatin organization.
[20066094] Cold Spring Harb Perspect Biol 1(4): a000224 (2009)
2010  
40
Genome-wide insights into eukaryotic transcriptional control.
[20529212] Genome Biol 11(6): 305 (2010)
2011  
41
Principles of chromosomal organization: lessons from yeast.
[21383075] J Cell Biol 192(5): 723-33 (2011)
2009  
42
Nuclear neighborhoods and gene expression.
[19339170] Curr Opin Genet Dev 19(2): 172-9 (2009)
2010  
43
MiDReG: a method of mining developmentally regulated genes using Boolean implications.
[20231483] Proc Natl Acad Sci U S A 107(13): 5732-7 (2010)
2005  
44
Logic functions of the genomic cis-regulatory code.
[15788531] Proc Natl Acad Sci U S A 102(14): 4954-9 (2005)
2008  
45
RNA-binding proteins and post-transcriptional gene regulation.
[18342629] FEBS Lett 582(14): 1977-86 (2008)
2009  
46
You're one in a googol: optimizing genes for protein expression.
[19324676] J R Soc Interface 6 Suppl 4(-): S467-76 (2009)
2008  
47
Gene regulation by transcription factors and microRNAs.
[18369135] Science 319(5871): 1785-6 (2008)
2009  
48
A single molecule view of gene expression.
[19819144] Trends Cell Biol 19(11): 630-7 (2009)
2009  
49
Cistromics of hormone-dependent cancer.
[19369485] Endocr Relat Cancer 16(2): 381-9 (2009)
2004  
50
Methods to find out the expression of activated genes.
[15385048] Reprod Biol Endocrinol 2(-): 68 (2004)
2010  
51
Gene-centered regulatory networks.
[20008400] Brief Funct Genomics 9(1): 4-12 (2010)
2011  
52
Shaping the Genome with Non-Coding RNAs.
[21874119] Curr Genomics 12(5): 307-21 (2011)
2010  
53
Minireview: role of kinases and chromatin remodeling in progesterone signaling to chromatin.
[20484412] Mol Endocrinol 24(11): 2088-98 (2010)
2011  
54
Impulse control: temporal dynamics in gene transcription.
[21414481] Cell 144(6): 886-96 (2011)
2010  
55
How the sequence of a gene can tune its translation.
[20403320] Cell 141(2): 227-9 (2010)
2004  
56
The multicoloured world of promoter recognition complexes.
[14685269] EMBO J 23(1): 2-8 (2004)
2010  
57
Deciphering the genome's regulatory code: the many languages of DNA.
[20394065] Bioessays 32(5): 381-4 (2010)
2010  
58
Architectural genetic and epigenetic control of regulatory networks: compartmentalizing machinery for transcription and chromatin remodeling in nuclear microenvironments.
[21133844] Crit Rev Eukaryot Gene Expr 20(2): 149-55 (2010)
2007  
59
Deciphering modular and dynamic behaviors of transcriptional networks.
[18923925] Genomic Med 1(1-2): 19-28 (2007)
2002  
60
Finding and decrypting of promoters contributes to the elucidation of gene function.
[12542410] In Silico Biol 2(3): 249-55 (2002)
2007  
61
From "simple" DNA-protein interactions to the macromolecular machines of gene expression.
[17477836] Annu Rev Biophys Biomol Struct 36(-): 79-105 (2007)
2010  
62
Regulation of gene expression via the core promoter and the basal transcriptional machinery.
[19682982] Dev Biol 339(2): 225-9 (2010)
2010  
63
Enhancers: the abundance and function of regulatory sequences beyond promoters.
[20025863] Dev Biol 339(2): 250-7 (2010)
2009  
64
Poly(C)-binding proteins as transcriptional regulators of gene expression.
[19284986] Biochem Biophys Res Commun 380(3): 431-6 (2009)

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