Literature DB >> 33634076

Utilizing Ion Mobility-Mass Spectrometry to Investigate the Unfolding Pathway of Cu/Zn Superoxide Dismutase.

Karen E Butler1, Yoshihiko Takinami2, Adam Rainczuk3, Erin S Baker1, Blaine R Roberts4,5.   

Abstract

Native mass spectrometry has emerged as a powerful tool for structural biology as it enables the evaluation of molecules as they occur in their physiological conditions. Ion mobility spectrometry-mass spectrometry (IMS-MS) has shown essential in these analyses as it allows the measurement of the shape of a molecule, denoted as its collision cross section (CCS), and mass. The structural information garnered from native IMS-MS provides insight into the tertiary and quaternary structure of proteins and can be used to validate NMR or crystallographic X-ray structures. Additionally, due to the rapid nature (millisecond measurements) and ability of IMS-MS to analyze heterogeneous solutions, it can be used to address structural questions not possible with traditional structural approaches. Herein, we applied multiple solution conditions to systematically denature bovine Cu/Zn-superoxide dismutase (SOD1) and assess its unfolding pathway from the holo-dimer to the holo-monomer, single-metal monomer, and apo-monomer. Additionally, we compared and noted 1-2% agreement between CCS values from both drift tube IMS and trapped IMS for the SOD1 holo-monomer and holo-dimer. The observed CCS values were in excellent agreement with computational CCS values predicted from the homo-dimer crystal structure, showcasing the ability to use both IMS-MS platforms to provide valuable structural information for molecular modeling of protein interactions and structural assessments.
Copyright © 2021 Butler, Takinami, Rainczuk, Baker and Roberts.

Entities:  

Keywords:  SOD1; drift tube ion mobility spectrometry; ion mobility spectrometry; native mass spectrometry; superoxide dismutase; trapped ion mobility spectrometry

Year:  2021        PMID: 33634076      PMCID: PMC7900566          DOI: 10.3389/fchem.2021.614595

Source DB:  PubMed          Journal:  Front Chem        ISSN: 2296-2646            Impact factor:   5.221


  61 in total

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7.  Decreased metallation and activity in subsets of mutant superoxide dismutases associated with familial amyotrophic lateral sclerosis.

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8.  Conformational variability of the Cu site in one subunit of bovine CuZn superoxide dismutase: the importance of mobility in the Glu119-Leu142 loop region for catalytic function.

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Authors:  P B Stathopulos; J A O Rumfeldt; G A Scholz; R A Irani; H E Frey; R A Hallewell; J R Lepock; E M Meiering
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  1 in total

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