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GPN 环 GTP 酶 1 中的一个核输出序列对于 RNA 聚合酶 II 的核靶向是必需的蛋白质,该序列对于核输出是必要且充分的。

A nuclear export sequence in GPN-loop GTPase 1, an essential protein for nuclear targeting of RNA polymerase II, is necessary and sufficient for nuclear export.

作者信息

Reyes-Pardo Humberto, Barbosa-Camacho Angel A, Pérez-Mejía Ana E, Lara-Chacón Bárbara, Salas-Estrada Leslie A, Robledo-Rivera Angélica Y, Montero-Morán Gabriela M, Lara-González Samuel, Calera Mónica R, Sánchez-Olea Roberto

机构信息

Instituto de Física, Universidad Autónoma de San Luis Potosí, Zona Universitaria, San Luis Potosí, San Luis Potosí, México.

出版信息

Biochim Biophys Acta. 2012 Oct;1823(10):1756-66. doi: 10.1016/j.bbamcr.2012.07.001. Epub 2012 Jul 14.

Abstract

XAB1/Gpn1 is a GTPase that associates with RNA polymerase II (RNAPII) in a GTP-dependent manner. Although XAB1/Gpn1 is essential for nuclear accumulation of RNAPII, the underlying mechanism is not known. A XAB1/Gpn1-EYFP fluorescent protein, like endogenous XAB1/Gpn1, localized to the cytoplasm but it rapidly accumulated in the cell nucleus in the presence of leptomycin B, a chemical inhibitor of the nuclear transport receptor Crm1. Crm1 recognizes short peptides in substrate proteins called nuclear export sequences (NES). Here, we employed site-directed mutagenesis and fluorescence microscopy to assess the functionality of all six putative NESs in XAB1/Gpn1. Mutating five of the six putative NESs did not alter the cytoplasmic localization of XAB1/Gpn1-EYFP. However, a V302A/L304A double mutant XAB1/Gpn1-EYFP protein was clearly accumulated in the cell nucleus, indicating the disruption of a functional NES. This functional XAB1/Gpn1 NES displays all features present in most common and potent NESs, including, in addition to Φ1-Φ4, a critical fifth hydrophobic amino acid Φ0. Therefore, in human Gpn1 this NES spans amino acids 292-LERLRKDMGSVAL-304. XAB1/Gpn1 NES is remarkably conserved during evolution. XAB1/Gpn1 NES was sufficient for nuclear export activity, as it caused a complete exclusion of EYFP from the cell nucleus. Molecular modeling of XAB1/Gpn1 provided a mechanistic reason for NES selection, as functionality correlated with accessibility, and it also suggested a mechanism for NES inhibition by intramolecular masking. In conclusion, we have identified a highly active, evolutionarily conserved NES in XAB1/Gpn1 that is critical for nucleo-cytoplasmic shuttling and steady-state cytoplasmic localization of XAB1/Gpn1.

摘要

XAB1/Gpn1是一种GTP酶,它以GTP依赖的方式与RNA聚合酶II(RNAPII)相关联。尽管XAB1/Gpn1对RNAPII的核积累至关重要,但其潜在机制尚不清楚。一种XAB1/Gpn1-EYFP荧光蛋白,与内源性XAB1/Gpn1一样,定位于细胞质,但在存在核转运受体Crm1的化学抑制剂雷帕霉素B的情况下,它会迅速在细胞核中积累。Crm1识别底物蛋白中称为核输出序列(NES)的短肽。在这里,我们采用定点诱变和荧光显微镜来评估XAB1/Gpn1中所有六个假定NES的功能。六个假定NES中的五个发生突变并没有改变XAB1/Gpn1-EYFP的细胞质定位。然而,V302A/L304A双突变体XAB1/Gpn1-EYFP蛋白明显在细胞核中积累,表明功能性NES被破坏。这种功能性XAB1/Gpn1 NES具有大多数常见且有效的NES所具有的所有特征,除了Φ1-Φ4之外,还包括关键的第五个疏水氨基酸Φ0。因此,在人类Gpn1中,这个NES跨越氨基酸292-LERLRKDMGSVAL-304。XAB1/Gpn1 NES在进化过程中非常保守。XAB1/Gpn1 NES足以进行核输出活动,因为它导致EYFP完全排除在细胞核之外。XAB1/Gpn1的分子建模为NES选择提供了一个机制原因,因为功能与可及性相关,并且它还提出了一种通过分子内掩盖抑制NES的机制。总之,我们在XAB1/Gpn1中鉴定出一种高度活跃、进化保守的NES,它对于XAB1/Gpn1的核质穿梭和稳态细胞质定位至关重要。

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