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10.1371/journal.pone.0180083

http://scihub22266oqcxt.onion/10.1371/journal.pone.0180083
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C5491127!5491127!28662096
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suck abstract from ncbi


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pmid28662096      PLoS+One 2017 ; 12 (6): ä
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  • Ultrasensitivity in signaling cascades revisited: Linking local and global ultrasensitivity estimations #MMPMID28662096
  • Altszyler E; Ventura AC; Colman-Lerner A; Chernomoretz A
  • PLoS One 2017[]; 12 (6): ä PMID28662096show ga
  • Ultrasensitive response motifs, capable of converting graded stimuli into binary responses, are well-conserved in signal transduction networks. Although it has been shown that a cascade arrangement of multiple ultrasensitive modules can enhance the system?s ultrasensitivity, how a given combination of layers affects a cascade?s ultrasensitivity remains an open question for the general case. Here, we introduce a methodology that allows us to determine the presence of sequestration effects and to quantify the relative contribution of each module to the overall cascade?s ultrasensitivity. The proposed analysis framework provides a natural link between global and local ultrasensitivity descriptors and it is particularly well-suited to characterize and understand mathematical models used to study real biological systems. As a case study, we have considered three mathematical models introduced by O?Shaughnessy et al. to study a tunable synthetic MAPK cascade, and we show how our methodology can help modelers better understand alternative models.
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