scholarly journals Effect of quercetin on lipid membrane rigidity: assessment by atomic force microscopy and molecular dynamics simulations

BBA Advances ◽  
2021 ◽  
pp. 100018
Author(s):  
Jad Eid ◽  
Alia Jraij ◽  
Hélène Greige-Gerges ◽  
Luca Monticelli
2021 ◽  
Author(s):  
Hiroki Koide ◽  
Noriyuki Kodera ◽  
Shveta Bisht ◽  
Shoji Takada ◽  
Tsuyoshi Terakawa

The condensin protein complex compacts chromatin during mitosis using its DNA-loop extrusion activity. Previous studies proposed scrunching and loop-capture models as molecular mechanisms for the loop extrusion process, both of which assume the binding of double-strand (ds) DNA to the so-called hinge domain formed at the interface of the condensin subunits Smc2 and Smc4. However, how the hinge domain contacts dsDNA has remained unknown, potentially due to its conformational plasticity. Here, we conducted atomic force microscopy imaging of the budding yeast condensin holo-complex and used this data as basis for coarse-grained molecular dynamics simulations to model the hinge structure in a transient open conformation. We then simulated the dsDNA binding to open and closed hinge conformations, predicting that dsDNA binds to the outside surface when closed and to the outside and inside surfaces when open. Our simulations also suggested that the hinge can close around dsDNA bound to the inside surface. The conformational change of the hinge domain might be essential for the dsDNA binding regulation and play important roles in condensin-mediated DNA-loop extrusion.


2021 ◽  
Author(s):  
Grazia Maria Laura Messina ◽  
Claudia Mazzuca ◽  
Monica Dettin ◽  
Annj Zamuner ◽  
Benedetta Di Napoli ◽  
...  

The paper reports Atomic Force Microscopy results and Molecular Dynamics simulations on the striking differences of long-term self-organization structure for the negatively charged (AcA4)2KD (“double tail”) and AcA4D (“single tail”)...


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