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The crystal structure of TAL effector PthXo1 bound to its DNA target.


ABSTRACT: DNA recognition by TAL effectors is mediated by tandem repeats, each 33 to 35 residues in length, that specify nucleotides via unique repeat-variable diresidues (RVDs). The crystal structure of PthXo1 bound to its DNA target was determined by high-throughput computational structure prediction and validated by heavy-atom derivatization. Each repeat forms a left-handed, two-helix bundle that presents an RVD-containing loop to the DNA. The repeats self-associate to form a right-handed superhelix wrapped around the DNA major groove. The first RVD residue forms a stabilizing contact with the protein backbone, while the second makes a base-specific contact to the DNA sense strand. Two degenerate amino-terminal repeats also interact with the DNA. Containing several RVDs and noncanonical associations, the structure illustrates the basis of TAL effector-DNA recognition.

SUBMITTER: Mak AN 

PROVIDER: S-EPMC3427646 | biostudies-literature | 2012 Feb

REPOSITORIES: biostudies-literature

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The crystal structure of TAL effector PthXo1 bound to its DNA target.

Mak Amanda Nga-Sze AN   Bradley Philip P   Cernadas Raul A RA   Bogdanove Adam J AJ   Stoddard Barry L BL  

Science (New York, N.Y.) 20120105 6069


DNA recognition by TAL effectors is mediated by tandem repeats, each 33 to 35 residues in length, that specify nucleotides via unique repeat-variable diresidues (RVDs). The crystal structure of PthXo1 bound to its DNA target was determined by high-throughput computational structure prediction and validated by heavy-atom derivatization. Each repeat forms a left-handed, two-helix bundle that presents an RVD-containing loop to the DNA. The repeats self-associate to form a right-handed superhelix wr  ...[more]

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