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Y27632的类似物增加间隙连接通讯并抑制转化的NIH3T3集落的形成。

Analogues of Y27632 increase gap junction communication and suppress the formation of transformed NIH3T3 colonies.

作者信息

Hampson L, He X T, Oliver A W, Hadfield J A, Kemp T, Butler J, McGown A, Kitchener H C, Hampson I N

机构信息

University of Manchester School of Cancer Studies and Imaging Science, Gynaecological Oncology Laboratories, St Mary's Hospital, Manchester M13 OJH, UK.

出版信息

Br J Cancer. 2009 Sep 1;101(5):829-39. doi: 10.1038/sj.bjc.6605208.

Abstract

BACKGROUND

Constitutive activation of RhoA-dependent RhoA kinase (ROCK) signalling is known to promote cellular transformation and the ROCK inhibitor Y-27632 has the ability to suppress focus formation of RhoA transformed NIH3T3 cells.

METHODS

Sixty-four novel structural analogues of Y27632 were synthesised and tested for their ability to persistently inhibit the transformation of NIH3T3 cells by Rho guanidine exchange factor 16 (ARHGEF16) or Ras. In vitro kinase inhibitor profiling, co-culture of transformed cells with non-transformed cells and a novel Lucifer yellow/PKH67 dye transfer method were used to investigate their mode of action.

RESULTS

Four Y27632 analogues inhibited transformed focus formation that persisted when the compound was withdrawn. No toxicity was observed against either transformed or non-transformed cells and the effect was dependent on co-culture of these two cell types. In vitro kinase inhibitor profiling indicated that these compounds had reduced activity against ROCK compared with Y27632, targeting instead Aurora A (AURKA), p38 (MAPK14) and Hgk (MAP4K4). Dye transfer analysis showed they increased gap junction intercellular communication (GJIC) between transformed and non-transformed cells.

CONCLUSIONS

These data are the first to suggest that transient blockade of specific kinases can induce a persistent inhibition of non-contact inhibited transformed colony formation and can also remove pre-formed colonies. These effects could potentially be mediated by the observed increase in GJIC between transformed and non-transformed cells. Selection of kinase inhibitors with this property may thus provide a novel strategy for cancer chemoprevention.

摘要

背景

已知RhoA依赖性RhoA激酶(ROCK)信号通路的组成性激活会促进细胞转化,而ROCK抑制剂Y-27632具有抑制RhoA转化的NIH3T3细胞集落形成的能力。

方法

合成了64种Y27632的新型结构类似物,并测试了它们持续抑制Rho鸟嘌呤交换因子16(ARHGEF16)或Ras诱导的NIH3T3细胞转化的能力。采用体外激酶抑制剂谱分析、转化细胞与未转化细胞共培养以及一种新型的荧光素黄/PKH67染料转移方法来研究它们的作用方式。

结果

四种Y27632类似物抑制了转化集落的形成,且在撤去化合物后这种抑制作用仍持续存在。未观察到对转化细胞或未转化细胞的毒性,其作用依赖于这两种细胞类型的共培养。体外激酶抑制剂谱分析表明,与Y27632相比,这些化合物对ROCK的活性降低,而是靶向极光激酶A(AURKA)、p38(MAPK14)和Hgk(MAP4K4)。染料转移分析显示,它们增加了转化细胞与未转化细胞之间的缝隙连接细胞间通讯(GJIC)。

结论

这些数据首次表明,对特定激酶的短暂阻断可诱导对非接触抑制性转化集落形成的持续抑制,还可消除预先形成的集落。这些效应可能是由转化细胞与未转化细胞之间观察到的GJIC增加所介导的。因此,选择具有这种特性的激酶抑制剂可能为癌症化学预防提供一种新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2725/2736836/5e71fe786912/6605208f1.jpg

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