Quantitative investigation of two metallohydrolases by X-ray absorption spectroscopy near-edge spectroscopy

W Zhao, WS Chu, FF Yang, MJ Yu, DL Chen… - Nuclear Instruments and …, 2007 - Elsevier
W Zhao, WS Chu, FF Yang, MJ Yu, DL Chen, XY Guo, DW Zhou, N Shi, A Marcelli, LW Niu…
Nuclear Instruments and Methods in Physics Research Section A: Accelerators …, 2007Elsevier
The last several years have witnessed a tremendous increase in biological applications
using X-ray absorption spectroscopy (BioXAS), thanks to continuous advancements in
synchrotron radiation (SR) sources and detector technology. However, XAS applications in
many biological systems have been limited by the intrinsic limitations of the Extended X-ray
Absorption Fine Structure (EXAFS) technique eg, the lack of sensitivity to bond angles. As a
consequence, the application of the X-ray absorption near-edge structure (XANES) …
The last several years have witnessed a tremendous increase in biological applications using X-ray absorption spectroscopy (BioXAS), thanks to continuous advancements in synchrotron radiation (SR) sources and detector technology. However, XAS applications in many biological systems have been limited by the intrinsic limitations of the Extended X-ray Absorption Fine Structure (EXAFS) technique e.g., the lack of sensitivity to bond angles. As a consequence, the application of the X-ray absorption near-edge structure (XANES) spectroscopy changed this scenario that is now continuously changing with the introduction of the first quantitative XANES packages such as Minut XANES (MXAN). Here we present and discuss the XANES code MXAN, a novel XANES-fitting package that allows a quantitative analysis of experimental data applied to Zn K-edge spectra of two metalloproteins: Leptospira interrogans Peptide deformylase (LiPDF) and acutolysin-C, a representative of snake venom metalloproteinases (SVMPs) from Agkistrodon acutus venom. The analysis on these two metallohydrolases reveals that proteolytic activities are correlated to subtle conformation changes around the zinc ion. In particular, this quantitative study clarifies the occurrence of the LiPDF catalytic mechanism via a two-water-molecules model, whereas in the acutolysin-C we have observed a different proteolytic activity correlated to structural changes around the zinc ion induced by pH variations.
Elsevier
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