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Subnuclear trafficking and gene targeting by steroid receptors
Akhilesh K. Nagaich
, Geetha V. Rayasam
, Elisabeth D. Martinez
, Matthias Becker
,
Yi Qiu
, Thomas A. Johnson
, Cem Elbi
, Terace M. Fletcher
, Sam John
, Gordon L. Hager
Penn State Cancer Institute
Cancer Institute, Mechanisms of Carcinogenesis
Department of Cell and Biological Systems
Research output
:
Contribution to journal
›
Article
›
peer-review
40
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Scopus citations
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Neuroscience
Glucocorticoid Receptor
100%
Gene Delivery
100%
Receptor
100%
Steroid
100%
Chromatin
66%
Promoter Region
50%
DNA Template
50%
Receptor Binding
16%
In Vitro
16%
In Vivo
16%
Adenosine Triphosphate
16%
Imaging Technique
16%
Chaperone
16%
Chromatin Assembly and Disassembly
16%
Nucleoprotein
16%
Keyphrases
Gene Targeting
100%
Glucocorticoid Receptor
100%
Steroid Receptors
100%
Chromatin
66%
Binding Events
16%
Living Cells
16%
Dynamic Model
16%
Receptor Binding
16%
Hormone-responsive
16%
Regulatory Elements
16%
Nucleoplasm
16%
Molecular Chaperone
16%
Chromatin Remodeling
16%
Multiple Mechanisms
16%
Promoter DNA
16%
Tandem Array
16%
Nucleoprotein
16%
UV Laser
16%
Hit-and-run
16%
Sigma-1 Receptor
16%
Remodeling Process
16%
Ligand Activation
16%
Novel Imaging
16%
Biochemistry, Genetics and Molecular Biology
Glucocorticoid Receptor
100%
Gene Targeting
100%
Steroid Receptor
100%
Chromatin
66%
Promoter Region
50%
DNA Template
50%
Adenosine Triphosphate
16%
Cross-Link
16%
Chromatin Remodeling
16%
Regulatory Element
16%
Nucleoprotein
16%
Nucleoplasm
16%
Receptor Binding
16%
Chaperone Protein
16%
Immunology and Microbiology
Gene Targeting
100%
Glucocorticoid
100%
Steroid
100%
Chromatin
66%
Promoter Region
50%
DNA Template
50%
Cross Linking
16%
Receptor Binding
16%
Chromatin Assembly and Disassembly
16%
Nucleoprotein
16%
Chaperone Protein
16%
In Vitro
16%