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Classic broken cell techniques and newer live cell methods for cell cycle assessment

机译:经典的破碎细胞技术和更新的活细胞方法用于细胞周期评估

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摘要

Many common, important diseases are either caused or exacerbated by hyperactivation (e.g., cancer) or inactivation (e.g., heart failure) of the cell division cycle. A better understanding of the cell cycle is critical for interpreting numerous types of physiological changes in cells. Moreover, new insights into how to control it will facilitate new therapeutics for a variety of diseases and new avenues in regenerative medicine. The progression of cells through the four main phases of their division cycle [G0/G1, S (DNA synthesis), G2, and M (mitosis)] is a highly conserved process orchestrated by several pathways (e.g., transcription, phosphorylation, nuclear import/export, and protein ubiquitination) that coordinate a core cell cycle pathway. This core pathway can also receive inputs that are cell type and cell niche dependent. “Broken cell” methods (e.g., use of labeled nucleotide analogs) to assess for cell cycle activity have revealed important insights regarding the cell cycle but lack the ability to assess living cells in real time (longitudinal studies) and with single-cell resolution. Moreover, such methods often require cell synchronization, which can perturb the pathway under study. Live cell cycle sensors can be used at single-cell resolution in living cells, intact tissue, and whole animals. Use of these more recently available sensors has the potential to reveal physiologically relevant insights regarding the normal and perturbed cell division cycle.
机译:细胞分裂周期的过度活化(例如癌症)或失活(例如心力衰竭)会导致或加剧许多常见的重要疾病。对细胞周期的更好理解对于解释细胞中多种生理变化至关重要。而且,关于如何控制它的新见解将促进针对多种疾病的新疗法和再生医学的新途径。细胞通过其分裂周期的四个主要阶段的进展[G0 / G1,S(DNA合成),G2和M(有丝分裂)]是一个高度保守的过程,由几个途径(例如,转录,磷酸化,核导入)精心策划/出口,以及蛋白质泛素化)来协调核心细胞周期途径。该核心途径还可以接受细胞类型和细胞生态位依赖性的输入。评估细胞周期活性的“破碎细胞”方法(例如,使用标记的核苷酸类似物)已揭示出有关细胞周期的重要见解,但缺乏实时(纵向研究)和单细胞分辨率评估活细胞的能力。此外,此类方法通常需要细胞同步,这可能会干扰正在研究的途径。活细胞周期传感器可以单细胞分辨率用于活细胞,完整组织和整个动物中。这些最新可用的传感器的使用可能揭示有关正常和扰动的细胞分裂周期的生理学相关见解。

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