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Sall genes regulate hindlimb initiation in mouse embryos
Katherine Q. Chen
, Hiroko Kawakami
, Aaron Anderson
, Dylan Corcoran
, Aditi Soni
, Ryuichi Nishinakamura
,
Yasuhiko Kawakami
Stem Cell Institute
Genetics, Cell Biology and Development (TMED)
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Scopus citations
Overview
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Keyphrases
Mouse Embryo
100%
Hindlimb
100%
SALL4
81%
ISL1
72%
SALL1
36%
Conditional Knockout
18%
Protrusion
18%
Hypomorphic mutation
18%
Progenitor Cells
9%
Genetic Interaction
9%
Initiation Mechanism
9%
Zinc Finger Transcription Factor
9%
Master Regulator
9%
Lateral Plate Mesoderm
9%
Chromatin Immunoprecipitation (ChIP)
9%
Frequency Loss
9%
Genetic Evidence
9%
Molecular Processes
9%
Limb Bud
9%
FGF10
9%
Transcription Factor Genes
9%
Forelimb
9%
Double Knockout
9%
TBX5
9%
Functional Redundancy
9%
Limb Progenitor
9%
Vertebrate Limbs
9%
PITX1
9%
TBX4
9%
Loss of Expression
9%
Biochemistry, Genetics and Molecular Biology
SALL4
100%
Allele
66%
Genetics
33%
Enhancer Region
33%
Gene Interaction
33%
Lateral Plate Mesoderm
33%
Zinc Finger Transcription Factor
33%
Progenitor Cell
33%
Medicine and Dentistry
Mouse Embryo
100%
Hindlimb
100%
Limb
27%
Forelimb
18%
Allele
18%
Mesoderm
9%
Gene Interaction
9%
Enhancer Region
9%
Zinc Finger Protein
9%
Transcription Factors
9%
Progenitor Cell
9%
Neuroscience
SALL4
100%
Zinc Finger Transcription Factor
33%
Molecular Processes
33%
Lateral Plate Mesoderm
33%
Gene Interaction
33%
Enhancer Region
33%
Progenitor Cell
33%