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Molecular basis for specificity of nuclear import and prediction of nuclear localization.

机译:核输入特异性和预测核定位的分子基础。

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Although proteins are translated on cytoplasmic ribosomes, many of these proteins play essential roles in the nucleus, mediating key cellular processes including but not limited to DNA replication and repair as well as transcription and RNA processing. Thus, understanding how these critical nuclear proteins are accurately targeted to the nucleus is of paramount importance in biology. Interaction and structural studies in the recent years have jointly revealed some general rules on the specificity determinants of the recognition of nuclear targeting signals by their specific receptors, at least for two nuclear import pathways: (i) the classical pathway, which involves the classical nuclear localization sequences (cNLSs) and the receptors importin-alpha/karyopherin-alpha and importin-beta/karyopherin-beta1; and (ii) the karyopherin-beta2 pathway, which employs the proline-tyrosine (PY)-NLSs and the receptor transportin-1/karyopherin-beta2. The understanding of specificity rules allows the prediction of protein nuclear localization. We review the current understanding of the molecular determinants of the specificity of nuclear import, focusing on the importin-alpha*cargo recognition, as well as the currently available databases and predictive tools relevant to nuclear localization. This article is part of a Special Issue entitled: Regulation of Signaling and Cellular Fate through Modulation of Nuclear Protein Import.
机译:尽管蛋白质在细胞质核糖体上翻译,但许多蛋白质在细胞核中起着至关重要的作用,介导关键的细胞过程,包括但不限于DNA复制和修复以及转录和RNA加工。因此,了解生物学中如何将这些关键的核蛋白准确地靶向核至关重要。近年来的相互作用和结构研究共同揭示了一些特异性规则,这些规则决定了特异性受体识别核靶向信号的特异性决定因素,至少在两个核输入途径中:(i)经典途径,其中涉及经典核定位序列(cNLSs)和受体importin-alpha / karyopherin-alpha和importin-beta / karyopherin-beta1; (ii)karyopherin-beta2途径,该途径采用脯氨酸-酪氨酸(PY)-NLS和受体transportin-1 / karyopherin-beta2。对特异性规则的理解可以预测蛋白质核的定位。我们回顾了当前对核输入特异性分子决定因素的理解,重点是对importin-α*货物的识别,以及与核定位有关的当前可用数据库和预测工具。本文是一个名为“通过调节核蛋白输入调节信号传导和细胞命运的法规”的特刊的一部分。

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