Probing the function of a ligand-modulated dynamic tunnel in bifunctional proline utilization A (PutA)

2021 ◽  
Vol 712 ◽  
pp. 109025
Author(s):  
David A. Korasick ◽  
Shelbi L. Christgen ◽  
Insaf A. Qureshi ◽  
Donald F. Becker ◽  
John J. Tanner
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2014 ◽  
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Min Luo ◽  
Travis A. Pemberton ◽  
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2016 ◽  
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Min Luo ◽  
Thameesha T. Gamage ◽  
Benjamin W. Arentson ◽  
Katherine N. Schlasner ◽  
Donald F. Becker ◽  
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Jonathan P. Schuermann ◽  
Tommi A. White ◽  
Dhiraj Srivastava ◽  
Dale B. Karr ◽  
John J. Tanner

2017 ◽  
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Li-Kai Liu ◽  
Donald F. Becker ◽  
John J. Tanner

Biochemistry ◽  
2017 ◽  
Vol 56 (47) ◽  
pp. 6292-6303 ◽  
Author(s):  
Shelbi L. Christgen ◽  
Weidong Zhu ◽  
Nikhilesh Sanyal ◽  
Bushra Bibi ◽  
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2016 ◽  
Vol 36 (6) ◽  
Author(s):  
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Erin L. Hayes ◽  
Weidong Zhu ◽  
Harkewal Singh ◽  
John J. Tanner ◽  
...  

Proline utilization A (PutA) is a bifunctional flavoenzyme with proline dehydrogenase (PRODH) and Δ1-pyrroline-5-carboxylate (P5C) dehydrogenase (P5CDH) domains that catalyses the two-step oxidation of proline to glutamate. Trifunctional PutAs also have an N-terminal ribbon–helix–helix (RHH) DNA-binding domain and moonlight as autogenous transcriptional repressors of the put regulon. A unique property of trifunctional PutA is the ability to switch functions from DNA-bound repressor to membrane-associated enzyme in response to cellular nutritional needs and proline availability. In the present study, we attempt to construct a trifunctional PutA by fusing the RHH domain of Escherichia coli PutA (EcRHH) to the bifunctional Rhodobacter capsulatus PutA (RcPutA) in order to explore the modular design of functional switching in trifunctional PutAs. The EcRHH–RcPutA chimaera retains the catalytic properties of RcPutA while acquiring the oligomeric state, quaternary structure and DNA-binding properties of EcPutA. Furthermore, the EcRHH–RcPutA chimaera exhibits proline-induced lipid association, which is a fundamental characteristic of functional switching. Unexpectedly, RcPutA lipid binding is also activated by proline, which shows for the first time that bifunctional PutAs exhibit a limited form of functional switching. Altogether, these results suggest that the C-terminal domain (CTD), which is conserved by trifunctional PutAs and certain bifunctional PutAs, is essential for functional switching in trifunctional PutAs.


2017 ◽  
Vol 292 (23) ◽  
pp. 9652-9665 ◽  
Author(s):  
David A. Korasick ◽  
Thameesha T. Gamage ◽  
Shelbi Christgen ◽  
Kyle M. Stiers ◽  
Lesa J. Beamer ◽  
...  

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