Buchholz_2009_ACS.Chem.Biol_4_41

Reference

Title : Structural basis for binding specificity between subclasses of modular polyketide synthase docking domains - Buchholz_2009_ACS.Chem.Biol_4_41
Author(s) : Buchholz TJ , Geders TW , Bartley FE, 3rd , Reynolds KA , Smith JL , Sherman DH
Ref : ACS Chemical Biology , 4 :41 , 2009
Abstract :

Bacterial type I polyketide synthases (PKSs) assemble structurally diverse natural products of significant clinical value from simple metabolic building blocks. The synthesis of these compounds occurs in a processive fashion along a large multiprotein complex. Transfer of the acyl intermediate across interpolypeptide junctions is mediated, at least in large part, by N- and C-terminal docking domains. We report here a comprehensive analysis of the binding affinity and selectivity for the complete set of discrete docking domain pairs in the pikromycin and erythromycin PKS systems. Despite disconnection from their parent module, each cognate pair of docking domains retained exquisite binding selectivity. Further insights were obtained by X-ray crystallographic analysis of the PikAIII/PikAIV docking domain interface. This new information revealed a series of key interacting residues that enabled development of a structural model for the recently proposed H2-T2 class of polypeptides involved in PKS intermodular molecular recognition.

PubMedSearch : Buchholz_2009_ACS.Chem.Biol_4_41
PubMedID: 19146481
Gene_locus related to this paper: strve-PIKAIV

Related information

Gene_locus strve-PIKAIV

Citations formats

Buchholz TJ, Geders TW, Bartley FE, 3rd, Reynolds KA, Smith JL, Sherman DH (2009)
Structural basis for binding specificity between subclasses of modular polyketide synthase docking domains
ACS Chemical Biology 4 :41

Buchholz TJ, Geders TW, Bartley FE, 3rd, Reynolds KA, Smith JL, Sherman DH (2009)
ACS Chemical Biology 4 :41