paper-with-me

홈 › Papers

Effect of receptor cooperativity on methylation dynamics in bacterial chemotaxis with weak and strong gradient

2022-01-27 · Shobhan Dev Mandal, Sakuntala Chatterjee

We study methylation dynamics of the chemoreceptors as an {\sl E.coli} cell moves around in a spatially varying chemo-attractant environment. We consider attractant concentration with strong and weak spatial gradient. During the uphill and downhill motion of the cell along the gradient, we measure the temporal variation of average methylation level of the receptor clusters. Our numerical simulations show that the methylation dynamics depends sensitively on the size of the receptor clusters and also on the strength of the gradient. At short times after the beginning of a run, the methylation dynamics is mainly controlled by short runs which are generally associated with high receptor activity. This results in demethylation at short times. But for intermediate or large times, long runs play an important role and depending on receptor cooperativity or gradient strength, the qualitative variation of methylation can be completely different in this time regime. For weak gradient, both for uphill and downhill runs, after the initial demethylation, we find methylation level increases steadily with time for all cluster sizes. Similar qualitative behavior is observed for strong gradient during uphill runs as well. However, the methylation dynamics for downhill runs in strong gradient show highly non-trivial dependence on the receptor cluster size. We explain this behavior as a result of interplay between the sensing and adaptation modules of the signaling network.

📄 PDF Abstract BibTeX arXiv:2201.11418

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Cooperativity transitions driven by higher-order oligomer formations in ligand-induced receptor dimerization

2019-05-27 · Masaki Watabe, Satya N. V. Arjunan, Wei Xiang Chew, Kazunari Kaizu 외

While cooperativity in ligand-induced receptor dimerization has been linked with receptor-receptor couplings via minimal representations of physical observables, effects arising from higher-order oligomer (e.g., trimer a…

Sensory adaptation in a continuum model of bacterial chemotaxis -- working range, cost-accuracy relation, and coupled systems

2024-01-20 · Vansh Kharbanda, Benedikt Sabass

Sensory adaptation enables organisms to adjust their perception in a changing environment. A paradigm is bacterial chemotaxis, where the output activity of chemoreceptors is adapted to different baseline concentrations v…

Detecting concentration changes with cooperative receptors

2015-07-27

Cells constantly need to monitor the state of the environment to detect changes and timely respond. The detection of concentration changes of a ligand by a set of receptors can be cast as a problem of hypothesis testing,…

Effect of receptor clustering on chemotactic performance of Escherichia coli: sensing versus adaptation

2020-09-06 · Shobhan Dev Mandal, Sakuntala Chatterjee

We show how the competition between sensing and adaptation can result in a performance peak in E.coli chemotaxis using extensive numerical simulations in a detailed theoretical model. Receptor clustering amplifies the in…

Clustering

Fundamental Limits to Cellular Sensing

2015-05-25

In recent years experiments have demonstrated that living cells can measure low chemical concentrations with high precision, and much progress has been made in understanding what sets the fundamental limit to the precisi…