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Effects of human deafness γ-actin mutations (DFNA20/26) on actin function
Keith E. Bryan
,
Kuo Kuang Wen
, Mei Zhu
, Nanna Dahl Rendtorff
, Michael Feldkamp
, Lisbeth Tranebjaerg
, Karen H. Friderici
, Peter A. Rubenstein
Department of Pediatrics
Department of Cell and Biological Systems
Research output
:
Contribution to journal
›
Article
›
peer-review
38
Scopus citations
Overview
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Dive into the research topics of 'Effects of human deafness γ-actin mutations (DFNA20/26) on actin function'. Together they form a unique fingerprint.
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Keyphrases
Actin
100%
Deafness
100%
Actin mutation
100%
Polymerized
27%
Thermal Stability
9%
Dominant Effect
9%
Carbon Source
9%
Vacuole
9%
Mitochondrial DNA
9%
Point mutation
9%
Mole Fraction
9%
Mutant Strains
9%
Hearing Impairment
9%
Low Ionic Strength
9%
Morphological Abnormalities
9%
Randomly Distributed
9%
Glycerol
9%
Mutant Cells
9%
Strain Specificity
9%
Kinetic Properties
9%
Actin Filaments
9%
Actin Patch
9%
Actin-binding Proteins
9%
Actin Cable
9%
Protein Flexibility
9%
Mitochondrial Morphology
9%
Mitochondrial Defect
9%
Nucleotide Exchange
9%
Growth Deficiency
9%
Non-polarizing
9%
Pharmacology, Toxicology and Pharmaceutical Science
Actin
100%
Hearing Impairment
100%
Buffer
6%
Mole (Insectivora)
6%
Ionic Strength
6%
Mitochondrial DNA
6%
Growth Retardation
6%
Thermostability
6%
Nucleation
6%
Actin Binding Protein
6%
Immunology and Microbiology
Actin
100%
Wild Type
11%
Protein Binding
5%
Cell Mutant
5%
Point Mutation
5%
Morphology
5%
Ionic Strength
5%
Mole (Insectivora)
5%
Autosomal Dominant Inheritance
5%
Thermostability
5%
Actin Filament
5%
Muscle
5%
Glycerol
5%
Biochemistry, Genetics and Molecular Biology
Actin
100%
Wild Type
11%
Thermostability
5%
Morphology
5%
Ionic Strength
5%
Point Mutation
5%
Glycerol
5%
Autosomal Dominant Inheritance
5%
Cell Mutant
5%
Mole (Insectivora)
5%
Actin-Binding Protein
5%
Mitochondrial DNA
5%
Neuroscience
Actin
100%
In Vitro
6%
Mitochondrial DNA
6%
In Vivo
6%
Point Mutation
6%
Actin Filament
6%
Actin Binding Protein
6%