4.6 Review

Structure, function, and mechanism of proline utilization A (PutA)

期刊

ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS
卷 632, 期 -, 页码 142-157

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.abb.2017.07.005

关键词

Flavoprotein; Flavin-dependent reaction; Protein structure; proline catabolism; Multifunctional enzymes; Substrate channeling; Aldehyde dehydrogenase; Enzyme hysteresis

资金

  1. NIGMS of National Institutes of Health [R01GM065546, R01GM061068, P30GM103335]

向作者/读者索取更多资源

Proline has important roles in multiple biological processes such as cellular bioenergetics, cell growth, oxidative and osmotic stress response, protein folding and stability, and redox signaling. The proline catabolic pathway, which forms glutamate, enables organisms to utilize proline as a carbon, nitrogen, and energy source. FAD-dependent proline dehydrogenase (PRODH) and NAD(+)-dependent glutamate semialdehyde dehydrogenase (GSALDH) convert proline to glutamate in two sequential oxidative steps. Depletion of PRODH and GSALDH in humans leads to hyperprolinemia, which is associated with mental disorders such as schizophrenia. Also, some pathogens require proline catabolism for virulence. A unique aspect of proline catabolism is the multifunctional proline utilization A (PutA) enzyme found in Gram-negative bacteria. PutA is a large (>1000 residues) bifunctional enzyme that combines PRODH and GSALDH activities into one polypeptide chain. In addition, some PutAs function as a DNA-binding transcriptional repressor of proline utilization genes. This review describes several attributes of PutA that make it a remarkable flavoenzyme: (1) diversity of oligomeric state and quaternary structure; (2) substrate channeling and enzyme hysteresis; (3) DNA-binding activity and transcriptional repressor function; and (4) flavin redox dependent changes in subcellular location and function in response to proline (functional switching). (C) 2017 Elsevier Inc. All rights reserved.

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