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Crystal structure of thermostable alkylsulfatase SdsAP from Pseudomonas sp. S9.


ABSTRACT: A novel alkylsulfatase from bacterium Pseudomonas sp. S9 (SdsAP) was identified as a thermostable alkylsulfatases (type III), which could hydrolyze the primary alkyl sulfate such as sodium dodecyl sulfate (SDS). Thus, it has a potential application of SDS biodegradation. The crystal structure of SdsAP has been solved to a resolution of 1.76 Å and reveals that SdsAP contains the characteristic metallo-?-lactamase-like fold domain, dimerization domain, and C-terminal sterol carrier protein type 2 (SCP-2)-like fold domain. Kinetic characterization of SdsAP to SDS by isothermal titration calorimetry (ITC) and enzymatic activity assays of constructed mutants demonstrate that Y246 and G263 are important residues for its preference for the hydrolysis of 'primary alkyl' chains, confirming that SdsAP is a primary alkylsulfatase.

SUBMITTER: Sun L 

PROVIDER: S-EPMC5426288 | biostudies-literature | 2017 Jun

REPOSITORIES: biostudies-literature

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Crystal structure of thermostable alkylsulfatase SdsAP from <i>Pseudomonas sp. S9</i>.

Sun Lifang L   Chen Pu P   Su Yintao Y   Cai Zhixiong Z   Ruan Lingwei L   Xu Xun X   Wu Yunkun Y  

Bioscience reports 20170511 3


A novel alkylsulfatase from bacterium <i>Pseudomonas sp. S9</i> (SdsAP) was identified as a thermostable alkylsulfatases (type III), which could hydrolyze the primary alkyl sulfate such as sodium dodecyl sulfate (SDS). Thus, it has a potential application of SDS biodegradation. The crystal structure of SdsAP has been solved to a resolution of 1.76 Å and reveals that SdsAP contains the characteristic metallo-β-lactamase-like fold domain, dimerization domain, and C-terminal sterol carrier protein  ...[more]

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