作者
Paolo Bisegna, Giovanni Caruso, Daniele Andreucci, Lixin Shen, Vsevolod V Gurevich, Heidi E Hamm, Emmanuele DiBenedetto
发表日期
2008/5/1
期刊
Biophysical journal
卷号
94
期号
9
页码范围
3363-3383
出版商
Elsevier
简介
The single photon response in vertebrate phototransduction is highly reproducible despite a number of random components of the activation cascade, including the random activation site, the random walk of an activated receptor, and its quenching in a random number of steps. Here we use a previously generated and tested spatiotemporal mathematical and computational model to identify possible mechanisms of variability reduction. The model permits one to separate the process into modules, and to analyze their impact separately. We show that the activation cascade is responsible for generation of variability, whereas diffusion of the second messengers is responsible for its suppression. Randomness of the activation site contributes at early times to the coefficient of variation of the photoresponse, whereas the Brownian path of a photoisomerized rhodopsin (Rh*) has a negligible effect. The major driver of …
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