衣藻鞭毛长度控制——细胞器大小调节的范例。

Kimberly A Wemmer, Wallace F Marshall
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引用次数: 57

摘要

细胞生物学中一个尚未解决的基本问题是细胞如何控制其细胞器的大小。纤毛和鞭毛是研究细胞器大小控制机制的理想实验对象,因为它们的大小易于测量,可以用一个数字-长度来表示。此外,纤毛参与许多发育和生理过程表明,了解纤毛的大小控制系统对于理解纤毛疾病至关重要,其中许多疾病(例如常染色体隐性多囊肾病)已知与异常短的纤毛有关。模式生物莱茵衣藻的鞭毛为研究纤毛长度控制提供了最好的遗传和细胞生物学系统。利用遗传学、生物化学、影像学和数学模型对这种生物进行的研究揭示了许多参与纤毛和鞭毛长度控制的基因,并提出了一些可测试的长度调节模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flagellar length control in chlamydomonas--paradigm for organelle size regulation.

A fundamental unsolved question in cell biology is how the cell controls the size of its organelles. Cilia and flagella are an ideal test case to study the mechanism of organelle size control, because their size is easily measured and can be represented by a single number-length. Moreover, the involvement of cilia in many developmental and physiological processes suggests an understanding of their size control system is critical for understanding ciliary diseases, many of which (e.g., autosomal recessive polycystic kidney disease) are known to involve abnormally short cilia. The flagella of the model organism Chlamydomonas reinhardtii provide the best genetic and cell-biological system to study length control of cilia. Studies in this organism using genetics, biochemistry, imaging, and mathematical modeling have revealed many genes involved in length control of cilia and flagella, and have suggested several testable models for length regulation.

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