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Temperature-dependent self-assembly of biofilaments during red blood cell sickling

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dc.contributor.author BEHERA A.
dc.contributor.author SHARMA O.
dc.contributor.author PAUL D.
dc.contributor.author SAIN A.
dc.date.accessioned 2023-03-17T05:35:25Z
dc.date.available 2023-03-17T05:35:25Z
dc.date.issued 2022
dc.identifier.citation Journal of Chemical Physics,157(1) en_US
dc.identifier.issn 219606
dc.identifier.uri https://dx.doi.org/10.1063/5.0091690
dc.identifier.uri http://localhost:8080/xmlui/handle/100/40549
dc.description.abstract Molecular self-assembly plays a vital role in various biological functions. However, when aberrant molecules self-assemble to form large aggregates, it can give rise to various diseases. For example, sickle cell disease and alzheimer's disease are caused by self-assembled hemoglobin fibers and amyloid plaques, respectively. Here, we study the assembly kinetics of such fibers using kinetic monte carlo simulation. We focus on the initial lag time of these highly stochastic processes, during which self-assembly is very slow. The lag time distributions turn out to be similar for two very different regimes of polymerization, namely, (a) when polymerization is slow and depolymerization is fast and (b) the opposite case, when polymerization is fast and depolymerization is slow. Using temperature-dependent on- and off-rates for hemoglobin fiber growth, reported in recent in vitro experiments, we show that the mean lag time can exhibit non-monotonic behavior with respect to the change in temperature. © 2022 author(s). en_US
dc.language.iso English en_US
dc.publisher American Institute of Physics Inc. en_US
dc.subject.other Hemoglobin en_US
dc.subject.other Intelligent systems en_US
dc.subject.other Monte Carlo methods en_US
dc.subject.other Neurodegenerative diseases en_US
dc.subject.other Random processes en_US
dc.subject.other Self assembly en_US
dc.subject.other Stochastic systems en_US
dc.subject.other Alzheimers disease en_US
dc.subject.other Biological functions en_US
dc.subject.other Haemoglobins en_US
dc.subject.other Lag-time en_US
dc.subject.other Large aggregates en_US
dc.subject.other Molecular self assembly en_US
dc.subject.other Red blood cell en_US
dc.subject.other Self-assemble en_US
dc.subject.other Sickle cell disease en_US
dc.subject.other Temperature dependent en_US
dc.subject.other Polymerization en_US
dc.subject.other erythrocyte en_US
dc.subject.other kinetics en_US
dc.subject.other Markov chain en_US
dc.subject.other polymerization en_US
dc.subject.other temperature en_US
dc.subject.other Erythrocytes en_US
dc.subject.other Kinetics en_US
dc.subject.other Polymerization en_US
dc.subject.other Stochastic Processes en_US
dc.subject.other Temperature en_US
dc.title Temperature-dependent self-assembly of biofilaments during red blood cell sickling en_US
dc.type Article en_US


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