Lott Kaylen, Cingolani Gino
Department of Biochemistry and Molecular Biology, Thomas Jefferson University, 233 South 10th Street, Philadelphia, PA 19107, USA.
Biochim Biophys Acta. 2011 Sep;1813(9):1578-92. doi: 10.1016/j.bbamcr.2010.10.012. Epub 2010 Oct 26.
Specific and efficient recognition of import cargoes is essential to ensure nucleocytoplasmic transport. To this end, the prototypical karyopherin importin β associates with import cargoes directly or, more commonly, through import adaptors, such as importin α and snurportin. Adaptor proteins bind the nuclear localization sequence (NLS) of import cargoes while recruiting importin β via an N-terminal importin β binding (IBB) domain. The use of adaptors greatly expands and amplifies the repertoire of cellular cargoes that importin β can efficiently import into the cell nucleus and allows for fine regulation of nuclear import. Accordingly, the IBB domain is a dedicated NLS, unique to adaptor proteins that functions as a molecular liaison between importin β and import cargoes. This review provides an overview of the molecular role played by the IBB domain in orchestrating nucleocytoplasmic transport. Recent work has determined that the IBB domain has specialized functions at every step of the import and export pathway. Unexpectedly, this stretch of ~40 amino acids plays an essential role in regulating processes such as formation of the import complex, docking and translocation through the nuclear pore complex (NPC), release of import cargoes into the cell nucleus and finally recycling of import adaptors and importin β into the cytoplasm. Thus, the IBB domain is a master regulator of nucleocytoplasmic transport, whose complex molecular function is only recently beginning to emerge. This article is part of a Special Issue entitled: Regulation of Signaling and Cellular Fate through Modulation of Nuclear Protein Import.
特异性且高效地识别输入货物对于确保核质运输至关重要。为此,典型的核转运蛋白输入蛋白β直接或更常见地通过输入衔接蛋白(如输入蛋白α和核内小核糖核蛋白转运蛋白)与输入货物结合。衔接蛋白结合输入货物的核定位序列(NLS),同时通过N端输入蛋白β结合(IBB)结构域招募输入蛋白β。衔接蛋白的使用极大地扩展并放大了输入蛋白β能够有效导入细胞核的细胞货物种类,并允许对核输入进行精细调控。因此,IBB结构域是一种专门的NLS,是衔接蛋白所特有的,它在输入蛋白β和输入货物之间起分子联络作用。本综述概述了IBB结构域在协调核质运输中所起的分子作用。最近的研究确定,IBB结构域在输入和输出途径的每一步都具有特殊功能。出乎意料的是,这一段约40个氨基酸的序列在调节诸如输入复合物的形成、通过核孔复合体(NPC)的对接和转运、将输入货物释放到细胞核中以及最终将输入衔接蛋白和输入蛋白β循环回细胞质等过程中发挥着重要作用。因此,IBB结构域是核质运输的主要调节因子,其复杂的分子功能直到最近才开始显现出来。本文是名为:通过调节核蛋白输入来调节信号传导和细胞命运的特刊的一部分。