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从生化系统的角度看 PI3K 信号通路。

PI3K signaling through a biochemical systems lens.

机构信息

MRC-Protein Phosphorylation and Ubiquitylation Unit, School of Life Sciences, University of Dundee, Dundee, Scotland, United Kingdom.

Department of Pathology and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

J Biol Chem. 2023 Oct;299(10):105224. doi: 10.1016/j.jbc.2023.105224. Epub 2023 Sep 9.

Abstract

Following 3 decades of extensive research into PI3K signaling, it is now evidently clear that the underlying network does not equate to a simple ON/OFF switch. This is best illustrated by the multifaceted nature of the many diseases associated with aberrant PI3K signaling, including common cancers, metabolic disease, and rare developmental disorders. However, we are still far from a complete understanding of the fundamental control principles that govern the numerous phenotypic outputs that are elicited by activation of this well-characterized biochemical signaling network, downstream of an equally diverse set of extrinsic inputs. At its core, this is a question on the role of PI3K signaling in cellular information processing and decision making. Here, we review the determinants of accurate encoding and decoding of growth factor signals and discuss outstanding questions in the PI3K signal relay network. We emphasize the importance of quantitative biochemistry, in close integration with advances in single-cell time-resolved signaling measurements and mathematical modeling.

摘要

在对 PI3K 信号进行了 30 多年的广泛研究之后,现在显然清楚的是,基础网络并不等同于简单的开/关开关。这一点通过与异常 PI3K 信号相关的许多疾病的多方面性质得到了最好的说明,包括常见癌症、代谢疾病和罕见的发育障碍。然而,我们离完全理解控制该精心研究的生化信号网络下游众多表型输出的基本控制原则还相差甚远,而这些输出是由同样多样化的外在输入激活引起的。从本质上讲,这是一个关于 PI3K 信号在细胞信息处理和决策中的作用的问题。在这里,我们回顾了准确编码和解码生长因子信号的决定因素,并讨论了 PI3K 信号转导网络中的悬而未决的问题。我们强调了定量生物化学的重要性,它与单细胞时间分辨信号测量和数学建模的进展紧密结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3c9/10570132/19fd79141cea/gr1.jpg

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