Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

First Principles Calculation of Protein–Protein Dimer Affinities of ALS-Associated SOD1 Mutants

View through CrossRef
Cu,Zn superoxide dismutase (SOD1) is a 32 kDa homodimer that converts toxic oxygen radicals in neurons to less harmful species. The dimerization of SOD1 is essential to the stability of the protein. Monomerization increases the likelihood of SOD1 misfolding into conformations associated with aggregation, cellular toxicity, and neuronal death in familial amyotrophic lateral sclerosis (fALS). The ubiquity of disease-associated mutations throughout the primary sequence of SOD1 suggests an important role of physicochemical processes, including monomerization of SOD1, in the pathology of the disease. Herein, we use a first-principles statistical mechanics method to systematically calculate the free energy of dimer binding for SOD1 using molecular dynamics, which involves sequentially computing conformational, orientational, and separation distance contributions to the binding free energy. We consider the effects of two ALS-associated mutations in SOD1 protein on dimer stability, A4V and D101N, as well as the role of metal binding and disulfide bond formation. We find that the penalty for dimer formation arising from the conformational entropy of disordered loops in SOD1 is significantly larger than that for other protein–protein interactions previously considered. In the case of the disulfide-reduced protein, this leads to a bound complex whose formation is energetically disfavored. Somewhat surprisingly, the loop free energy penalty upon dimerization is still significant for the holoprotein, despite the increased structural order induced by the bound metal cations. This resulted in a surprisingly modest increase in dimer binding free energy of only about 1.5 kcal/mol upon metalation of the protein, suggesting that the most significant stabilizing effects of metalation are on folding stability rather than dimer binding stability. The mutant A4V has an unstable dimer due to weakened monomer-monomer interactions, which are manifested in the calculation by a separation free energy surface with a lower barrier. The mutant D101N has a stable dimer partially due to an unusually rigid β-barrel in the free monomer. D101N also exhibits anticooperativity in loop folding upon dimerization. These computational calculations are, to our knowledge, the most quantitatively accurate calculations of dimer binding stability in SOD1 to date.
Title: First Principles Calculation of Protein–Protein Dimer Affinities of ALS-Associated SOD1 Mutants
Description:
Cu,Zn superoxide dismutase (SOD1) is a 32 kDa homodimer that converts toxic oxygen radicals in neurons to less harmful species.
The dimerization of SOD1 is essential to the stability of the protein.
Monomerization increases the likelihood of SOD1 misfolding into conformations associated with aggregation, cellular toxicity, and neuronal death in familial amyotrophic lateral sclerosis (fALS).
The ubiquity of disease-associated mutations throughout the primary sequence of SOD1 suggests an important role of physicochemical processes, including monomerization of SOD1, in the pathology of the disease.
Herein, we use a first-principles statistical mechanics method to systematically calculate the free energy of dimer binding for SOD1 using molecular dynamics, which involves sequentially computing conformational, orientational, and separation distance contributions to the binding free energy.
We consider the effects of two ALS-associated mutations in SOD1 protein on dimer stability, A4V and D101N, as well as the role of metal binding and disulfide bond formation.
We find that the penalty for dimer formation arising from the conformational entropy of disordered loops in SOD1 is significantly larger than that for other protein–protein interactions previously considered.
In the case of the disulfide-reduced protein, this leads to a bound complex whose formation is energetically disfavored.
Somewhat surprisingly, the loop free energy penalty upon dimerization is still significant for the holoprotein, despite the increased structural order induced by the bound metal cations.
This resulted in a surprisingly modest increase in dimer binding free energy of only about 1.
5 kcal/mol upon metalation of the protein, suggesting that the most significant stabilizing effects of metalation are on folding stability rather than dimer binding stability.
The mutant A4V has an unstable dimer due to weakened monomer-monomer interactions, which are manifested in the calculation by a separation free energy surface with a lower barrier.
The mutant D101N has a stable dimer partially due to an unusually rigid β-barrel in the free monomer.
D101N also exhibits anticooperativity in loop folding upon dimerization.
These computational calculations are, to our knowledge, the most quantitatively accurate calculations of dimer binding stability in SOD1 to date.

Related Results

SOD1 silencing in motoneurons or glia rescues neuromuscular function in ALS mice
SOD1 silencing in motoneurons or glia rescues neuromuscular function in ALS mice
AbstractObjectiveAmyotrophic lateral sclerosis is an incurable disorder mainly characterized by motoneuron degeneration. Mutations in the superoxide dismutase 1 (SOD1) gene account...
Copper-ATSM as a Treatment for ALS: Support from Mutant SOD1 Models and Beyond
Copper-ATSM as a Treatment for ALS: Support from Mutant SOD1 Models and Beyond
The blood–brain barrier permeant, copper-containing compound, CuII(atsm), has successfully progressed from fundamental research outcomes in the laboratory through to phase 2/3 clin...
Rapid classification of a novel ALS-causing I149S variant in superoxide dismutase-1
Rapid classification of a novel ALS-causing I149S variant in superoxide dismutase-1
Abstract Variants of the oxygen free radical scavenging enzyme superoxide dismutase-1 (SOD1) are associated with the neurodegenerative disease am...
Interference of Heterophilic Antibody in D-dimer Determination in an Asymptomatic Elderly Woman
Interference of Heterophilic Antibody in D-dimer Determination in an Asymptomatic Elderly Woman
Background: D-Dimer is considered a pivotal biomarker in diagnosis of disseminated intravascular coagulation and in differential diagnosis of thrombosis and pulmonary embolism. Cas...
Serum Troponin T levels as a therapy response marker in SOD1-mediated ALS
Serum Troponin T levels as a therapy response marker in SOD1-mediated ALS
AbstractIntroductionSerum cardiac troponin T (cTnT) levels are elevated in the majority of amyotrophic lateral sclerosis (ALS) patients and increase over time. Neurofilament light ...
D‐dimer in Adolescent Pulmonary Embolism
D‐dimer in Adolescent Pulmonary Embolism
AbstractBackgroundD‐dimer is used to aid in diagnosing adult pulmonary embolism (PE). D‐dimer has not been validated in adolescents. Clinicians must balance the risk of overtesting...
Characterization of nonattaching mutants of Agrobacterium tumefaciens
Characterization of nonattaching mutants of Agrobacterium tumefaciens
The first step in tumor formation by Agrobacterium tumefaciens is the site-specific binding of the bacteria to plant host cells. Transposon mutants of the bacteria which fail to at...

Back to Top