conformational equilibria
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Author(s):  
Tamanna Poonia ◽  
Weslley G. D. P. Silva ◽  
Jennifer van Wijngaarden

Rotational spectroscopy and quantum mechanical calculations reveal a significant change in conformational landscapes when oxygen is substituted with sulfur: observation of features from nine conformers of diallylether versus one of the sulfide.


2021 ◽  
Author(s):  
Bruno Linclau ◽  
Zhong Wang ◽  
Benjamin Jeffries ◽  
Jerome Graton ◽  
Rodrigo Carbajo ◽  
...  

Author(s):  
Bruno Linclau ◽  
Zhong Wang ◽  
Benjamin Jeffries ◽  
Jerome Graton ◽  
Rodrigo Carbajo ◽  
...  

2021 ◽  
Vol 81 (19) ◽  
pp. 3919-3933.e7
Author(s):  
Wei Wang ◽  
Qinglian Liu ◽  
Qun Liu ◽  
Wayne A. Hendrickson

2021 ◽  
Author(s):  
Nicolai Tidemand Johansen ◽  
Marta Bonaccorsi ◽  
Tone Bengtsen ◽  
Andreas Haahr Larsen ◽  
Frederik Grønbæk Tidemand ◽  
...  

The CorA family of proteins regulates the homeostasis of divalent metal ions in many bacteria, archaea, and eukaryotic mitochondria, making it an important target in the investigation of the mechanisms of transport and its functional regulation. Although numerous structures of open and closed channels are now available for the CorA family, the mechanism of the transport regulation remains elusive. Here, we investigated the conformational distribution and associated dynamic behaviour of the pentameric Mg2+ channel CorA at room temperature using small-angle neutron scattering (SANS) in combination with molecular dynamics (MD) simulations and solid-state nuclear magnetic resonance spectroscopy (NMR). We find that neither the Mg2+-bound closed structure nor the Mg2+-free open forms are sufficient to explain the average conformation of CorA. Our data support the presence of conformational equilibria between multiple states, and we further find a variation in the behaviour of the backbone dynamics with and without Mg2+. We propose that CorA must be in a dynamic equilibrium between different non-conducting states, both symmetric and asymmetric, regardless of bound Mg2+ but that conducting states become more populated in Mg2+-free conditions. These properties are regulated by backbone dynamics and are key to understanding the functional regulation of CorA.


2021 ◽  
Author(s):  
Dingding Lv ◽  
Sonia Melandri ◽  
Assimo Maris ◽  
Luca Evangelisti ◽  
Wentao Song

Molecules ◽  
2020 ◽  
Vol 25 (18) ◽  
pp. 4057
Author(s):  
Gian Marco Elisi ◽  
Annalida Bedini ◽  
Laura Scalvini ◽  
Caterina Carmi ◽  
Silvia Bartolucci ◽  
...  

N-anilinoethylamides are a class of melatoninergic agents with the aniline portion mimicking the indole ring of the natural ligand and the ethylamide chain reproducing that of melatonin. The simplest compound in this class, N-{2-[(3-methoxyphenyl)methylamino]ethyl}acetamide (UCM793), has nanomolar binding affinity for MT1 and MT2 membrane receptors. To explore the effect of chain conformation on receptor binding, a methyl group was inserted on the methylene alpha or beta to the amide nitrogen and conformational equilibria were investigated by NMR spectroscopy and molecular dynamics simulations. Receptor affinity was conserved only for the beta-methyl derivative, which also showed significant stereoselectivity, with the (S) enantiomer being the eutomer. Molecular dynamics simulations, validated by NMR spectroscopy, showed that the beta-methyl group affects the conformational preferences of the ethylamide chain. Docking into the receptor crystal structure provides a rationale for the observed chiral recognition, suggesting that the (S)-beta-methyl group favors the conformation that better fits the receptor binding site.


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