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Nm23-H1 regulates glucose-stimulated insulin secretion in pancreatic β-cells via Arf6-Rac1 signaling axis.Nm23-H1通过Arf6-Rac1信号轴调节胰腺β细胞中葡萄糖刺激的胰岛素分泌。
Cell Physiol Biochem. 2013;32(3):533-41. doi: 10.1159/000354457. Epub 2013 Aug 30.
2
Syndecan-4 phosphorylation is a control point for integrin recycling.黏附连接蛋白-4 的磷酸化是整合素循环的一个控制点。
Dev Cell. 2013 Mar 11;24(5):472-85. doi: 10.1016/j.devcel.2013.01.027. Epub 2013 Feb 28.
3
NM23 deficiency promotes metastasis in a UV radiation-induced mouse model of human melanoma.NM23 缺失促进了紫外线辐射诱导的人类黑色素瘤小鼠模型中的转移。
Clin Exp Metastasis. 2013 Jan;30(1):25-36. doi: 10.1007/s10585-012-9495-z. Epub 2012 Jun 15.
4
Metastasis suppressor NM23-H1 promotes repair of UV-induced DNA damage and suppresses UV-induced melanomagenesis.转移抑制因子 NM23-H1 促进修复紫外线诱导的 DNA 损伤,并抑制紫外线诱导的黑色素瘤发生。
Cancer Res. 2012 Jan 1;72(1):133-43. doi: 10.1158/0008-5472.CAN-11-1795. Epub 2011 Nov 11.
5
Integrin α6β4 cooperates with LPA signaling to stimulate Rac through AKAP-Lbc-mediated RhoA activation.整合素 α6β4 与 LPA 信号协同作用,通过 AKAP-Lbc 介导的 RhoA 激活来刺激 Rac。
Am J Physiol Cell Physiol. 2012 Feb 1;302(3):C605-14. doi: 10.1152/ajpcell.00095.2011. Epub 2011 Nov 2.
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β1-integrin: a potential therapeutic target in the battle against cancer recurrence.β1 整合素:抗癌复发斗争中的潜在治疗靶点。
Clin Cancer Res. 2011 Dec 1;17(23):7219-23. doi: 10.1158/1078-0432.CCR-11-0642. Epub 2011 Sep 7.
7
Protein-protein interactions: a mechanism regulating the anti-metastatic properties of Nm23-H1.蛋白质-蛋白质相互作用:调控 Nm23-H1 抗肿瘤转移特性的机制。
Naunyn Schmiedebergs Arch Pharmacol. 2011 Oct;384(4-5):351-62. doi: 10.1007/s00210-011-0646-6. Epub 2011 Jun 29.
8
Knockdown of the β(1) integrin subunit reduces primary tumor growth and inhibits pancreatic cancer metastasis.β(1)整合素亚基敲低可减少原发性肿瘤生长并抑制胰腺癌转移。
Int J Cancer. 2011 Dec 15;129(12):2905-15. doi: 10.1002/ijc.25942. Epub 2011 Apr 13.
9
beta1-integrin is dispensable for the induction of ErbB2 mammary tumors but plays a critical role in the metastatic phase of tumor progression.β1 整合素对于 ErbB2 乳腺肿瘤的诱导是可有可无的,但在肿瘤进展的转移阶段起着关键作用。
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10
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NME1在抑制黑色素瘤细胞运动性和增强基因组稳定性方面的双重功能。

Dual functions of NME1 in suppression of cell motility and enhancement of genomic stability in melanoma.

作者信息

Kaetzel David M, Leonard Mary K, Cook Gemma S, Novak Marian, Jarrett Stuart G, Yang Xiuwei, Belkin Alexey M

机构信息

Department of Biochemistry and Molecular Biology, and Greenebaum Cancer Center, School of Medicine, University of Maryland-Baltimore, Baltimore, MD, 21201, USA,

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 2015 Feb;388(2):199-206. doi: 10.1007/s00210-014-1010-4. Epub 2014 Jul 15.

DOI:10.1007/s00210-014-1010-4
PMID:25017017
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4294989/
Abstract

The NME1 gene represents the prototypical metastasis suppressor, whose expression inhibits cell motility and metastasis without impact on primary tumor growth in a number of different human cancers. This report outlines our recent efforts to define the molecular mechanisms through which NME1 both suppresses cell motility and promotes genomic integrity in the setting of human melanoma. Forced NME1 expression in a variety of melanoma-derived cell lines was shown to induce dynamic changes in cell morphology and reorganization of the actin cytoskeleton, with formation of a network of thick stress fibers and assembly of fibronectin fibrils at large focal adhesions. Moreover, NME1 expression results in adhesion reprogramming through an impact on integrin repertoire and focal adhesion dynamics. Having previously demonstrated that NME1 expression promotes repair of DNA damage induced by ultraviolet radiation (UVR) in both yeast and mammalian cells, probably via the nucleotide excision repair pathway, we have more recently demonstrated that NME1 is rapidly recruited to double-strand breaks. This preliminary result represents the first evidence of direct interactions between NME1 and DNA in the context of DNA repair and has set the stage for current efforts to probe its functional interactions with double-strand break repair pathways. Discussed herein are molecular models to explain the interactions of NME1 with such diverse cellular functions as cell motility and DNA repair, potentially through its nucleoside diphosphate kinase and 3'-5' exonuclease activities.

摘要

NME1基因是典型的转移抑制基因,在多种不同的人类癌症中,其表达可抑制细胞运动和转移,而不影响原发性肿瘤的生长。本报告概述了我们最近为确定NME1在人类黑色素瘤中抑制细胞运动和促进基因组完整性的分子机制所做的努力。在多种黑色素瘤衍生的细胞系中强制表达NME1,结果显示可诱导细胞形态的动态变化和肌动蛋白细胞骨架的重组,形成厚应力纤维网络,并在大的粘着斑处组装纤连蛋白原纤维。此外,NME1的表达通过影响整合素库和粘着斑动力学导致粘附重编程。此前我们已经证明,NME1的表达可能通过核苷酸切除修复途径促进酵母和哺乳动物细胞中紫外线辐射(UVR)诱导的DNA损伤修复,最近我们又证明NME1可迅速募集到双链断裂处。这一初步结果代表了在DNA修复背景下NME1与DNA直接相互作用的首个证据,并为目前探究其与双链断裂修复途径功能相互作用的努力奠定了基础。本文讨论了分子模型,以解释NME1与细胞运动和DNA修复等多种细胞功能的相互作用,这可能是通过其核苷二磷酸激酶和3'-5'核酸外切酶活性实现的。