Multi-site phosphorylation is ubiquitous in cell biology and has been widely studied experimentally and theoretically. The underlying chemical modification mechanisms are typically assumed to be distributive or processive. In this paper, we study the behaviour of mixed mechanisms that can arise either because phosphorylation and dephosphorylation involve different mechanisms or because phosphorylation and/or dephosphorylation can occur through a combination of mechanisms. We examine a hierarchy of models to assess chemical information processing through different mixed mechanisms, using simulations, bifurcation analysis and analytical work. We demonstrate how mixed mechanisms can show important and unintuitive differences from pure distributive and processive mechanisms, in some cases resulting in monostable behaviour with simple dose-response behaviour, while in other cases generating new behaviour-like oscillations. Our results also suggest patterns of information processing that are relevant as the number of modification sites increases. Overall, our work creates a framework to examine information processing arising from complexities of multi-site modification mechanisms and their impact on signal transduction.
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http://dx.doi.org/10.1098/rsif.2014.1405 | DOI Listing |
World J Gastroenterol
January 2025
Department of Internal Medicine, Mixed Hospital of Laghouat, Laghouat Faculty of Medicine, Amar Telidji University, Laghouat 03000, Algeria.
Liver cancer remains a significant global health challenge, characterized by high incidence and mortality rates. Despite advancements in medical treatments, the prognosis for liver cancer patients remains poor, highlighting the urgent need for novel therapeutic approaches. Traditional Chinese medicine (TCM), particularly (CB), has shown promise in addressing this need due to its multi-target therapeutic mechanisms.
View Article and Find Full Text PDFCan J Kidney Health Dis
January 2025
Department of Pediatrics and Child Health, University of Manitoba, Winnipeg, Canada.
Background: The COVID-19 pandemic and its accompanying safeguards intensified many of the ongoing daily challenges faced by caregivers of young people with chronic kidney disease (CKD) both pre-transplant and post-transplant, and also created a variety of new and pressing concerns. Little is known about how these families managed this unexpected adversity in their lives.
Objective: To evaluate change in psychosocial risk for families of young people with CKD during the COVID-19 pandemic health emergency from the perspective of caregivers.
Curr Dev Nutr
January 2025
The Family, Interiors, Nutrition & Apparel (FINA) Department, San Francisco State University, San Francisco, CA, United States.
Background: Food insecurity on college campuses is a pressing issue, yet the ways in which students manage challenges and disruptions to their food security status (FSS) are poorly understood.
Objectives: The objective of this study was to examine knowledge of food insecurity as a concept, evaluate FSS, identify food acquisition-related behaviors, and determine whether these behaviors differ among FSS.
Methods: University students at increased risk of experiencing food insecurity ( = 43) were recruited for this mixed-methods study.
J Clin Nurs
January 2025
Ankara Hospital, Directory of Nursing Services, Baskent University, Ankara, Turkey.
Aim: To examine the factors affecting the ability of ostomates to perform activities of daily living and manage ostomy self-care.
Design: Mix method design.
Method: This study was undertaken through survey (descriptive and clinical characteristics form and Katz Activities of Daily Living (ADL)) for collecting the quantitative data (n = 60) and semi-structured interviews were conducted with patients unable to perform ostomy self-care for collecting qualitative data (n = 12) between January 2023 and December 2023.
Wave mixing (WM) techniques are crucial for applications such as supercontinuum generation, frequency conversion, and high-dimensional quantum encoding. However, their efficiency is often limited by complex phase-matching requirements, and current insights into phase-matching mechanisms for high-order WM remain limited. To address this, compact optical path configurations with high-peak-power, synchronous, multicolor ultrafast laser sources are needed to enhance high-order wave-mixing efficiency.
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