5b74 Citations

Heat induces end to end repetitive association in P. furiosus L-asparaginase which enables its thermophilic property.

Sci Rep 10 21702 (2020)
Related entries: 5b5u, 5cbp

Cited: 2 times
EuropePMC logo PMID: 33303914

Abstract

It remains undeciphered how thermophilic enzymes display enhanced stability at elevated temperatures. Taking L-asparaginase from P. furiosus (PfA) as an example, we combined scattering shapes deduced from small-angle X-ray scattering (SAXS) data at increased temperatures with symmetry mates from crystallographic structures to find that heating caused end-to-end association. The small contact point of self-binding appeared to be enabled by a terminal short β-strand in N-terminal domain, Leu179-Val-Val-Asn182 (LVVN). Interestingly, deletion of this strand led to a defunct enzyme, whereas suplementation of the peptide LVVN to the defunct enzyme restored structural frameworkwith mesophile-type functionality. Crystal structure of the peptide-bound defunct enzyme showed that one peptide ispresent in the same coordinates as in original enzyme, explaining gain-of lost function. A second peptide was seen bound to the protein at a different location suggesting its possible role in substrate-free molecular-association. Overall, we show that the heating induced self-assembly of native shapes of PfA led to an apparent super-stable assembly.

Articles - 5b74 mentioned but not cited (1)

  1. Heat induces end to end repetitive association in P. furiosus L-asparaginase which enables its thermophilic property. Sharma P, Tomar R, Yadav SS, Badmalia MD, Nath SK, Ashish, Kundu B. Sci Rep 10 21702 (2020)


Reviews citing this publication (1)