Literature DB >> 34115511

Structural Changes beyond the EF-Hand Contribute to Apparent Calcium Binding Affinities: Insights from Parvalbumins.

Kalyan Immadisetty1, Bin Sun1, Peter M Kekenes-Huskey1.   

Abstract

Members of the parvalbumin (PV) family of calcium (Ca2+) binding proteins (CBPs) share a relatively high level of sequence similarity. However, their Ca2+ affinities and selectivities against competing ions like Mg2+ can widely vary. We conducted molecular dynamics simulations of several α-parvalbumin (αPV) constructs with micromolar to nanomolar Ca2+ affinities to identify structural and dynamic features that contribute to their binding of ions. Specifically, we examined a D94S/G98E construct with a lower Ca2+ affinity (≈-18 kcal/mol) relative to the wild type (WT) (≈-22 kcal/mol) and an S55D/E59D variant with enhanced affinity (≈-24 kcal/mol). Additionally, we also examined the binding of Mg2+ to these isoforms, which is much weaker than Ca2+. We used mean spherical approximation (MSA) theory to evaluate ion binding thermodynamics within the proteins' EF-hand domains to account for the impact of ions' finite sizes and the surrounding electrolyte composition. While the MSA scores differentiated Mg2+ from Ca2+, they did not indicate that Ca2+ binding affinities at the binding loop differed between the PV isoforms. Instead, molecular mechanics generalized Born surface area (MM/GBSA) approximation energies, which we used to quantify the thermodynamic cost of structural rearrangement of the proteins upon binding ions, indicated that S55D/E59D αPV favored Ca2+ binding by -20 kcal/mol relative to WT versus 30 kcal/mol for D94S/G98E αPV. Meanwhile, Mg2+ binding was favored for the S55D/E59D αPV and D94S/G98E αPV variants by -18.32 and -1.65 kcal/mol, respectively. These energies implicate significant contributions to ion binding beyond oxygen coordination at the binding loop, which stemmed from changes in α-helicity, β-sheet character, and hydrogen bonding. Hence, Ca2+ affinity and selectivity against Mg2+ are emergent properties stemming from both local effects within the proteins' ion binding sites as well as non-local contributions elsewhere. Our findings broaden our understanding of the molecular bases governing αPV ion binding that are likely shared by members of the broad family of CBPs.

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Year:  2021        PMID: 34115511      PMCID: PMC8848088          DOI: 10.1021/acs.jpcb.1c01269

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   3.466


  86 in total

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2.  Characterization of the metal ion-binding domains from rat alpha- and beta-parvalbumins.

Authors:  Michael T Henzl; Sayeh Agah; John D Larson
Journal:  Biochemistry       Date:  2003-04-01       Impact factor: 3.162

3.  Calculation of Free Energy Landscape in Multi-Dimensions with Hamiltonian-Exchange Umbrella Sampling on Petascale Supercomputer.

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4.  Conformational effects of calcium release from parvalbumin: comparison of computational simulations with spectroscopic investigations.

Authors:  M Laberge; W W Wright; K Sudhakar; P A Liebman; J M Vanderkooi
Journal:  Biochemistry       Date:  1997-05-06       Impact factor: 3.162

5.  Many-body effect determines the selectivity for Ca2+ and Mg2+ in proteins.

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6.  Molecular Basis of S100A1 Activation at Saturating and Subsaturating Calcium Concentrations.

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9.  Microsecond molecular dynamics simulations of Mg²⁺- and K⁺-bound E1 intermediate states of the calcium pump.

Authors:  L Michel Espinoza-Fonseca; Joseph M Autry; David D Thomas
Journal:  PLoS One       Date:  2014-04-23       Impact factor: 3.240

10.  Key residues in TLR4-MD2 tetramer formation identified by free energy simulations.

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Journal:  PLoS Comput Biol       Date:  2019-10-14       Impact factor: 4.475

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  3 in total

1.  Non-Canonical Interaction between Calmodulin and Calcineurin Contributes to the Differential Regulation of Plant-Derived Calmodulins on Calcineurin.

Authors:  Bin Sun; Xuan Fang; Christopher N Johnson; Garrett Hauck; Yongjun Kou; Jonathan P Davis; Peter M Kekenes-Huskey
Journal:  J Chem Inf Model       Date:  2021-10-07       Impact factor: 4.956

2.  Elucidating the molecular basis of spontaneous activation in an engineered mechanosensitive channel.

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Journal:  Comput Struct Biotechnol J       Date:  2022-05-23       Impact factor: 6.155

Review 3.  Parvalbumin Role in Epilepsy and Psychiatric Comorbidities: From Mechanism to Intervention.

Authors:  Lívea Dornela Godoy; Tamiris Prizon; Matheus Teixeira Rossignoli; João Pereira Leite; José Luiz Liberato
Journal:  Front Integr Neurosci       Date:  2022-02-17
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