Summary information and primary citation
- PDB-id
-
1gau;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- transcription-DNA
- Method
- NMR
- Summary
- Solution structure of the specific DNA complex of the
zinc containing DNA binding domain of the erythroid
transcription factor gata-1 by multidimensional NMR
- Reference
-
Omichinski JG, Clore GM, Schaad O, Felsenfeld G, Trainor
C, Appella E, Stahl SJ, Gronenborn AM (1993): "NMR
structure of a specific DNA complex of Zn-containing DNA
binding domain of GATA-1." Science,
261, 438-446. doi: 10.1021/bi00131a004.
- Abstract
- The three-dimensional solution structure of a complex
between the DNA binding domain of the chicken erythroid
transcription factor GATA-1 and its cognate DNA site has
been determined with multidimensional heteronuclear
magnetic resonance spectroscopy. The DNA binding domain
consists of a core which contains a zinc coordinated by
four cysteines and a carboxyl-terminal tail. The core is
composed of two irregular antiparallel beta sheets and an
alpha helix, followed by a long loop that leads into the
carboxyl-terminal tail. The amino-terminal part of the
core, including the helix, is similar in structure,
although not in sequence, to the amino-terminal zinc module
of the glucocorticoid receptor DNA binding domain. In the
other regions, the structures of these two DNA binding
domains are entirely different. The DNA target site in
contact with the protein spans eight base pairs. The helix
and the loop connecting the two antiparallel beta sheets
interact with the major groove of the DNA. The
carboxyl-terminal tail, which is an essential determinant
of specific binding, wraps around into the minor groove.
The complex resembles a hand holding a rope with the palm
and fingers representing the protein core and the thumb,
the carboxyl-terminal tail. The specific interactions
between GATA-1 and DNA in the major groove are mainly
hydrophobic in nature, which accounts for the preponderance
of thymines in the target site. A large number of
interactions are observed with the phosphate backbone.