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编码微管结构:微管+TIP复合体主要调节因子与TOG结构域蛋白之间的变构相互作用。

Encoding the microtubule structure: Allosteric interactions between the microtubule +TIP complex master regulators and TOG-domain proteins.

作者信息

Grimaldi Ashley D, Zanic Marija, Kaverina Irina

机构信息

a Department of Cell and Developmental Biology ; Vanderbilt University Medical Center ; Nashville , TN USA.

出版信息

Cell Cycle. 2015;14(9):1375-8. doi: 10.1080/15384101.2015.1026521.

Abstract

Since their initial discovery, the intriguing proteins of the +TIP network have been the focus of intense investigation. Although many of the individual +TIP functions have been revealed, the capacity for +TIP proteins to regulate each other has not been widely addressed. Importantly, recent studies involving EBs, the master regulators of the +TIP complex, and several TOG-domain proteins have uncovered a novel mechanism of mutual +TIP regulation: allosteric interactions through changes in microtubule structure. These findings have added another level of complexity to the existing evidence on +TIP regulation and highlight the cooperative nature of the +TIP protein network.

摘要

自首次发现以来,+TIP网络中那些引人入胜的蛋白质一直是深入研究的焦点。尽管已经揭示了许多单个+TIP的功能,但+TIP蛋白相互调节的能力尚未得到广泛探讨。重要的是,最近涉及EBs(+TIP复合体的主要调节因子)和几种TOG结构域蛋白的研究发现了一种新的+TIP相互调节机制:通过微管结构变化进行的变构相互作用。这些发现为现有的+TIP调节证据增添了另一层复杂性,并突出了+TIP蛋白网络的协同性质。

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