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有丝分裂过程中细胞内梯度的自组织。

Self-organization of intracellular gradients during mitosis.

机构信息

Department of Biochemistry and Molecular Genetics, University of Virginia, School of Medicine, Charlottesville, Virginia, 22908, USA.

出版信息

Cell Div. 2010 Jan 29;5(1):5. doi: 10.1186/1747-1028-5-5.

Abstract

Gradients are used in a number of biological systems to transmit spatial information over a range of distances. The best studied are morphogen gradients where information is transmitted over many cell lengths. Smaller mitotic gradients reflect the need to organize several distinct events along the length of the mitotic spindle. The intracellular gradients that characterize mitosis are emerging as important regulatory paradigms. Intracellular gradients utilize intrinsic auto-regulatory feedback loops and diffusion to establish stable regions of activity within the mitotic cytosol. We review three recently described intracellular mitotic gradients. The Ran GTP gradient with its elaborate cascade of nuclear transport receptors and cargoes is the best characterized, yet the dynamics underlying the robust gradient of Ran-GTP have received little attention. Gradients of phosphorylation have been observed on Aurora B kinase substrates both before and after anaphase onset. In both instances the phosphorylation gradient appears to result from a soluble gradient of Aurora B kinase activity. Regulatory properties that support gradient formation are highlighted. Intracellular activity gradients that regulate localized mitotic events bare several hallmarks of self-organizing biologic systems that designate spatial information during pattern formation. Intracellular pattern formation represents a new paradigm in mitotic regulation.

摘要

梯度在许多生物系统中被用来在一定范围内传递空间信息。其中研究最多的是形态发生梯度,信息在多个细胞长度上传递。较小的有丝分裂梯度反映了需要在有丝分裂纺锤体的长度上组织几个不同的事件。有丝分裂的细胞内梯度正在成为重要的调节范例。细胞内梯度利用内在的自动调节反馈回路和扩散在有丝分裂细胞质中建立稳定的活性区域。我们回顾了最近描述的三种细胞内有丝分裂梯度。Ran GTP 梯度及其复杂的核转运受体和货物级联是研究得最好的,但 Ran-GTP 强大梯度背后的动力学却很少受到关注。在有丝分裂后期开始前后,在 Aurora B 激酶底物上都观察到磷酸化梯度。在这两种情况下,磷酸化梯度似乎是由可溶的 Aurora B 激酶活性梯度产生的。支持梯度形成的调节特性被强调。调节局部有丝分裂事件的细胞内活性梯度具有自我组织生物系统的几个特征,这些特征在形态发生过程中指定空间信息。细胞内形态发生是有丝分裂调节的一个新范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae16/2829544/456c4d4bfd46/1747-1028-5-5-1.jpg

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