Literature DB >> 11717519

Crystallization and preliminary crystallographic analysis of the proline dehydrogenase domain of the multifunctional PutA flavoprotein from Escherichia coli.

S Nadaraia1, Y H Lee, D F Becker, J J Tanner.   

Abstract

The PutA flavoprotein from Escherichia coli is a multifunctional protein that plays pivotal roles in proline catabolism by functioning as both a membrane-associated bifunctional enzyme and a transcriptional repressor. Peripherally membrane-bound PutA catalyzes the two-step oxidation of proline to glutamate, while cytoplasmic PutA represses the transcription of its own gene and the gene for a proline-transporter protein. X-ray crystallographic studies on PutA have been initiated to determine how the PutA structural scaffold enables it to be both an enzyme and a repressor, and to understand the mechanism by which PutA switches between its enzymatic and DNA-binding functions. To facilitate crystallization, a recombinant protein (PutA669) corresponding to the N-terminal 669 amino-acid residues of the 1320 residues of PutA was engineered. Activity assays demonstrated that PutA669 catalyzes the first step of chemistry performed by PutA, the conversion of proline to Delta1-pyrroline-5-carboxylate. Crystals of PutA669 have been obtained from PEG 3000 buffered at pH 6-7. The crystals occupy an I-centered orthorhombic lattice with unit-cell parameters a = 72.5, b = 140.2, c = 146.8 A; a 2.15 A data set was collected using a rotating-anode source. Assuming one molecule per asymmetric unit, the Matthews coefficient V(M) is 2.5 A(3) Da(-1), with a solvent content of 50%. The structure of PutA669 will be solved by multiple isomorphous replacement.

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Year:  2001        PMID: 11717519     DOI: 10.1107/s0907444901017140

Source DB:  PubMed          Journal:  Acta Crystallogr D Biol Crystallogr        ISSN: 0907-4449


  11 in total

1.  Characterization of a bifunctional PutA homologue from Bradyrhizobium japonicum and identification of an active site residue that modulates proline reduction of the flavin adenine dinucleotide cofactor.

Authors:  Navasona Krishnan; Donald F Becker
Journal:  Biochemistry       Date:  2005-06-28       Impact factor: 3.162

2.  The structure of the proline utilization a proline dehydrogenase domain inactivated by N-propargylglycine provides insight into conformational changes induced by substrate binding and flavin reduction.

Authors:  Dhiraj Srivastava; Weidong Zhu; William H Johnson; Christian P Whitman; Donald F Becker; John J Tanner
Journal:  Biochemistry       Date:  2010-01-26       Impact factor: 3.162

3.  Structure-affinity relationships of reversible proline analog inhibitors targeting proline dehydrogenase.

Authors:  Alexandra N Bogner; John J Tanner
Journal:  Org Biomol Chem       Date:  2022-01-26       Impact factor: 3.876

4.  Structures of the Escherichia coli PutA proline dehydrogenase domain in complex with competitive inhibitors.

Authors:  Min Zhang; Tommi A White; Jonathan P Schuermann; Berevan A Baban; Donald F Becker; John J Tanner
Journal:  Biochemistry       Date:  2004-10-05       Impact factor: 3.162

5.  Involvement of the β3-α3 loop of the proline dehydrogenase domain in allosteric regulation of membrane association of proline utilization A.

Authors:  Weidong Zhu; Ashley M Haile; Ranjan K Singh; John D Larson; Danielle Smithen; Jie Y Chan; John J Tanner; Donald F Becker
Journal:  Biochemistry       Date:  2013-06-19       Impact factor: 3.162

6.  Detection of L-lactate in polyethylene glycol solutions confirms the identity of the active-site ligand in a proline dehydrogenase structure.

Authors:  Min Zhang; John J Tanner
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2004-04-21

7.  Structure of the proline dehydrogenase domain of the multifunctional PutA flavoprotein.

Authors:  Yong-Hwan Lee; Shorena Nadaraia; Dan Gu; Donald F Becker; John J Tanner
Journal:  Nat Struct Biol       Date:  2003-02

8.  Cloning, purification and crystallization of Thermus thermophilus proline dehydrogenase.

Authors:  Tommi A White; John J Tanner
Journal:  Acta Crystallogr Sect F Struct Biol Cryst Commun       Date:  2005-07-08

9.  Three crystal forms of the bifunctional enzyme proline utilization A (PutA) from Bradyrhizobium japonicum.

Authors:  Jonathan P Schuermann; Tommi A White; Dhiraj Srivastava; Dale B Karr; John J Tanner
Journal:  Acta Crystallogr Sect F Struct Biol Cryst Commun       Date:  2008-09-30

Review 10.  Metabolic engineering strategy for synthetizing trans-4-hydroxy-L-proline in microorganisms.

Authors:  Zhenyu Zhang; Pengfu Liu; Weike Su; Huawei Zhang; Wenqian Xu; Xiaohe Chu
Journal:  Microb Cell Fact       Date:  2021-04-21       Impact factor: 5.328

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