适应性转录在健康和疾病中的普遍作用。

Thomas Lissek
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摘要

在动物中,适应性转录是将环境刺激与基因表达变化和随后的生物体重塑联系起来的关键机制。包括CREB、SRF、MEF2、FOS和EGR1等分子的适应性转录程序是多种生物体功能的核心,包括学习和记忆、免疫系统可塑性和肌肉肥大,它们的激活增加了细胞的弹性并预防了各种疾病。然而,它们也构成了许多适应不良过程的基础,并参与成瘾、抑郁、癌症、心血管疾病、自身免疫性疾病和代谢功能障碍等的进展,因此是介导适应-适应不良困境的主要例子。它们与抗抑郁药等主要治疗方式的治疗效果有关,并可能对治疗产生负面影响,例如,导致癌症的治疗耐药性。这篇综述探讨了适应性转录作为一种在健康和疾病中诱导适应性细胞状态转变的机制的普遍作用,并探讨了许多医学疾病可以被概念化为由细胞适应目标错误引起的。它还考虑了适应性基因程序基本结构的基本原则,如它们分为核心程序和定向程序。最后,它分析了如何通过靶向适应性转录结合复杂的刺激模式来最佳地重编程细胞,以利用内源性细胞重编程动力学并实现整个生物体的最佳健康。
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The universal role of adaptive transcription in health and disease.

In animals, adaptive transcription is a crucial mechanism to connect environmental stimulation to changes in gene expression and subsequent organism remodeling. Adaptive transcriptional programs involving molecules such as CREB, SRF, MEF2, FOS, and EGR1 are central to a wide variety of organism functions, including learning and memory, immune system plasticity, and muscle hypertrophy, and their activation increases cellular resilience and prevents various diseases. Yet, they also form the basis for many maladaptive processes and are involved in the progression of addiction, depression, cancer, cardiovascular disorders, autoimmune conditions, and metabolic dysfunction among others and are thus prime examples for mediating the adaptation-maladaptation dilemma. They are implicated in the therapeutic effects of major treatment modalities such as antidepressants and can have negative effects on treatment, for example, contributing to therapy resistance in cancer. This review examines the universal role of adaptive transcription as a mechanism for the induction of adaptive cell state transitions in health and disease and explores how many medical disorders can be conceptualized as caused by errors in cellular adaptation goals. It also considers the underlying principles in the basic structure of adaptive gene programs such as their division into a core and a directional program. Finally, it analyses how one might best reprogram cells via targeting of adaptive transcription in combination with complex stimulation patterns to leverage endogenous cellular reprogramming dynamics and achieve optimal health of the whole organism.

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