The forkhead domain hinge-loop plays a pivotal role in DNA binding and transcriptional activity of FOXP2
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Title
The forkhead domain hinge-loop plays a pivotal role in DNA binding and transcriptional activity of FOXP2
Authors
Keywords
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Journal
BIOLOGICAL CHEMISTRY
Volume 399, Issue 8, Pages 881-893
Publisher
Walter de Gruyter GmbH
Online
2018-06-08
DOI
10.1515/hsz-2018-0185
References
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Related references
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- Microfluidic affinity and ChIP-seq analyses converge on a conserved FOXP2-binding motif in chimp and human, which enables the detection of evolutionarily novel targets
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- High-Precision Isothermal Titration Calorimetry with Automated Peak-Shape Analysis
- (2012) Sandro Keller et al. ANALYTICAL CHEMISTRY
- Structure of a Domain-Swapped FOXP3 Dimer on DNA and Its Function in Regulatory T Cells
- (2011) Hozefa S. Bandukwala et al. IMMUNITY
- Genetic variation in FOXP2 alters grey matter concentrations in schizophrenia patients
- (2011) Filip Španiel et al. NEUROSCIENCE LETTERS
- Solution structure and backbone dynamics of the DNA-binding domain of FOXP1: Insight into its domain swapping and DNA binding
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- Structure of the FoxM1 DNA-recognition domain bound to a promoter sequence
- (2010) D. R. Littler et al. NUCLEIC ACIDS RESEARCH
- Interpreting protein/DNA interactions: distinguishing specific from non-specific and electrostatic from non-electrostatic components
- (2010) P. L. Privalov et al. NUCLEIC ACIDS RESEARCH
- The evolution of Fox genes and their role in development and disease
- (2009) Sridhar Hannenhalli et al. NATURE REVIEWS GENETICS
- Prevalence of Temperature-Dependent Heat Capacity Changes in Protein-DNA Interactions
- (2008) Chin-Chi Liu et al. BIOPHYSICAL JOURNAL
- Ultrasonic vocalization impairment of Foxp2 (R552H) knockin mice related to speech-language disorder and abnormality of Purkinje cells
- (2008) E. Fujita et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
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