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CRM1 依赖性核输出途径参与调节 MutLα 的亚细胞定位。

A CRM1-dependent nuclear export pathway is involved in the regulation of MutLα subcellular localization.

机构信息

Medical Clinic I, Biomedical Research Laboratory, Goethe-University, Frankfurt a.M., Germany.

出版信息

Genes Chromosomes Cancer. 2011 Feb;50(2):59-70. doi: 10.1002/gcc.20832.

Abstract

MutLα plays an essential role in DNA mismatch repair (MMR) and is additionally involved in other cellular mechanisms such as the regulation of cell cycle checkpoints and apoptosis. Therefore, not only germline MMR gene defects but also the subcellular localization of MutLα might be of importance for the development of Lynch syndrome. Recently, we showed that MutLα contains functional nuclear import sequences and is most frequently localized in the nucleus. Here, we demonstrate that MutLα can move bidirectionally towards the nuclear membrane. Using MutLα transfected HEK293T cells we observed a significant shift of MLH1 and PMS2 from the nucleus to the cytoplasm after irradiation or cisplatin treatment. We analyzed both proteins for potential nuclear export sequences (NES) and identified one functional Rev-type NES (⁵⁷⁸LFDLAMLAL) in the C-terminal part of MLH1 that facilitates export via the CRM1/exportin pathway. Moreover, an MLH1-NES mutation detected in a patient with Lynch syndrome showed normal MMR activity but led to significantly impaired cytoplasmic transport after actinomycin D treatment. These results indicate that MutLα is able to shuttle from the nucleus to the cytoplasm, probably signaling DNA damages to downstream pathways. In conclusion, not only a defective MMR but also impaired nucleo-cytoplasmic shuttling might result in the onset of Lynch syndrome.

摘要

MutLα 在 DNA 错配修复 (MMR) 中发挥着重要作用,此外还参与其他细胞机制,如细胞周期检查点和细胞凋亡的调节。因此,不仅胚系 MMR 基因缺陷,而且 MutLα 的亚细胞定位对于 Lynch 综合征的发展可能也很重要。最近,我们发现 MutLα 含有功能性核输入序列,并且最常定位于核内。在这里,我们证明 MutLα 可以双向移动到核膜。使用转染了 MutLα 的 HEK293T 细胞,我们观察到在照射或顺铂处理后,MLH1 和 PMS2 从核内显著转移到细胞质。我们分析了这两种蛋白质的潜在核输出序列 (NES),并在 MLH1 的 C 端部分鉴定出一个功能性 Rev 型 NES (⁵⁷⁸LFDLAMLAL),该 NES 可通过 CRM1/exportin 途径促进输出。此外,在 Lynch 综合征患者中检测到的 MLH1-NES 突变显示出正常的 MMR 活性,但在用放线菌素 D 处理后导致细胞质转运显著受损。这些结果表明 MutLα 能够从核内到细胞质穿梭,可能将 DNA 损伤信号传递到下游途径。总之,不仅是有缺陷的 MMR,还有受损的核质穿梭,都可能导致 Lynch 综合征的发生。

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