Summary information and primary citation
- PDB-id
-
3gib;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- RNA binding protein-RNA
- Method
- X-ray (2.4 Å)
- Summary
- Crystal structure of the complex of the e. coli hfq
with poly(a)
- Reference
-
Link TM, Valentin-Hansen P, Brennan RG (2009): "Structure
of Escherichia coli Hfq bound to polyriboadenylate
RNA." Proc.Natl.Acad.Sci.USA,
106, 19292-19297. doi: 10.1073/pnas.0908744106.
- Abstract
- Hfq is a small, highly abundant hexameric protein that
is found in many bacteria and plays a critical role in mRNA
expression and RNA stability. As an "RNA chaperone," Hfq
binds AU-rich sequences and facilitates the trans annealing
of small RNAs (sRNAs) to their target mRNAs, typically
resulting in the down-regulation of gene expression. Hfq
also plays a key role in bacterial RNA decay by binding
tightly to polyadenylate [poly(A)] tracts. The structural
mechanism by which Hfq recognizes and binds poly(A) is
unknown. Here, we report the crystal structure of
Escherichia coli Hfq bound to the poly(A) RNA, A(15). The
structure reveals a unique RNA binding mechanism. Unlike
uridine-containing sequences, which bind to the "proximal"
face, the poly(A) tract binds to the "distal" face of Hfq
using 6 tripartite binding motifs. Each motif consists of
an adenosine specificity site (A site), which is effected
by peptide backbone hydrogen bonds, a purine nucleotide
selectivity site (R site), and a sequence-nondiscriminating
RNA entrance/exit site (E site). The resulting implication
that Hfq can bind poly(A-R-N) triplets, where R is a purine
nucleotide and N is any nucleotide, was confirmed by
binding studies. Indeed, Hfq bound to the
oligoribonucleotides (AGG)(8), (AGC)(8), and the shorter
(A-R-N)(4) sequence, AACAACAAGAAG, with nanomolar
affinities. The abundance of (A-R-N)(4) and (A-R-N)(5)
triplet repeats in the E. coli genome suggests additional
RNA targets for Hfq. Further, the structure provides
insight into Hfq-mediated sRNA-mRNA annealing and the role
of Hfq in RNA decay.