Summary information and primary citation
- PDB-id
-
1h6f;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- transcription factor
- Method
- X-ray (1.7 Å)
- Summary
- Human tbx3, a transcription factor responsible for
ulnar-mammary syndrome, bound to a palindromic DNA
site
- Reference
-
Coll M, Seidman JG, Muller CW (2002): "Structure
of the DNA-Bound T-Box Domain of Human Tbx3, a
Transcription Factor Responsible for Ulnar- Mammary
Syndrome." Structure, 10,
343. doi: 10.1016/S0969-2126(02)00722-0.
- Abstract
- T-box genes encode transcription factors involved in
morphogenesis and organogenesis of vertebrates and
invertebrates. Mutations in human T-box genes TBX3, TBX5,
and TBX1 cause severe genetic disorders known as
Ulnar-Mammary syndrome (UMS), Holt-Oram syndrome (HOS), and
DiGeorge syndrome, respectively. The crystal structure of
the T-box domain of the first human T-box transcription
factor, TBX3, in complex with DNA at 1.7 A resolution
explains structural consequences of T-box domain point
mutations observed in UMS and HOS patients. Comparison with
the structure of the T-box domain from Xenopus laevis
(Xbra) bound to DNA shows differences in several secondary
structure elements and in the quaternary structure of the
two complexes. TBX3 independently recognizes the two
binding sites present in the palindromic DNA duplex,
whereas in Xbra, binding to the palindrome is stabilized
through interactions between the two monomers. The
different quaternary structures suggest different DNA
binding modes for T-box transcription factors.