The transcription factor TBX3 plays critical roles in development and TBX3 mutations in humans cause Ulnar-mammary syndrome. Efforts to understand how altered TBX3 dosage and function disrupt the development of numerous structures have been hampered by embryonic lethality of mice bearing presumed null alleles. We generated a novel conditional null allele of Tbx3: after Cre-mediated recombination, no mRNA or protein is detectable. In contrast, a putative null allele in which exons 1-3 are deleted produces a truncated protein that is abnormally located in the cytoplasm. Heterozygotes and homozygotes for this allele have different phenotypes than their counterparts bearing a true null allele. Our observations with these alleles in mice, and th...
Ulnar–mammary syndrome (UMS) is a rare autosomal-dominant disorder caused by mutations in TBX3. The ...
The ulnar-mammary syndrome gene, Tbx3, is a direct target of the retinoic acid signaling pathway, wh...
Mammalian development is highly sensitive to Tbx1 gene dosage reduction. Gene function insights can ...
The transcription factor TBX3 plays critical roles in development and TBX3 mutations in humans cause...
Ulnar-mammary syndrome (UMS) is a pleiotropic dis-order affecting limb, apocrine-gland, tooth, hair,...
Ulnar-mammary syndrome (UMS) is a pleiotropic disorder affecting limb, apocrine-gland, tooth, hair, ...
SummaryUlnar-mammary syndrome (UMS) is a pleiotropic disorder affecting limb, apocrine-gland, tooth,...
TBX3 is a member of the T-box family of transcription factors with critical roles in development, on...
pre-printTBX3 is a member of the T-box family of transcription factors with critical roles in develo...
<div><p>TBX3 is a member of the T-box family of transcription factors with critical roles in develop...
Abstract Background The T-box transcription factor TBX3 is necessary for early embryonic development...
Prolonged culturing of rodent cells in vitro activates p19(ARF) (named p14(ARF) in man), resulting i...
Ulnar–mammary syndrome (UMS) is a rare autosomal-dominant disorder caused by mutations in TBX3. The ...
Ulnar Mammary syndrome (UMS) is an autosomal disorder caused by haploinsufficiency of the TBX3 gene....
Prolonged culturing of rodent cells in vitro activates p19ARF (named p14ARF in man), resulting in a...
Ulnar–mammary syndrome (UMS) is a rare autosomal-dominant disorder caused by mutations in TBX3. The ...
The ulnar-mammary syndrome gene, Tbx3, is a direct target of the retinoic acid signaling pathway, wh...
Mammalian development is highly sensitive to Tbx1 gene dosage reduction. Gene function insights can ...
The transcription factor TBX3 plays critical roles in development and TBX3 mutations in humans cause...
Ulnar-mammary syndrome (UMS) is a pleiotropic dis-order affecting limb, apocrine-gland, tooth, hair,...
Ulnar-mammary syndrome (UMS) is a pleiotropic disorder affecting limb, apocrine-gland, tooth, hair, ...
SummaryUlnar-mammary syndrome (UMS) is a pleiotropic disorder affecting limb, apocrine-gland, tooth,...
TBX3 is a member of the T-box family of transcription factors with critical roles in development, on...
pre-printTBX3 is a member of the T-box family of transcription factors with critical roles in develo...
<div><p>TBX3 is a member of the T-box family of transcription factors with critical roles in develop...
Abstract Background The T-box transcription factor TBX3 is necessary for early embryonic development...
Prolonged culturing of rodent cells in vitro activates p19(ARF) (named p14(ARF) in man), resulting i...
Ulnar–mammary syndrome (UMS) is a rare autosomal-dominant disorder caused by mutations in TBX3. The ...
Ulnar Mammary syndrome (UMS) is an autosomal disorder caused by haploinsufficiency of the TBX3 gene....
Prolonged culturing of rodent cells in vitro activates p19ARF (named p14ARF in man), resulting in a...
Ulnar–mammary syndrome (UMS) is a rare autosomal-dominant disorder caused by mutations in TBX3. The ...
The ulnar-mammary syndrome gene, Tbx3, is a direct target of the retinoic acid signaling pathway, wh...
Mammalian development is highly sensitive to Tbx1 gene dosage reduction. Gene function insights can ...