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DGC特异性突变通过ROCK失活维持癌细胞存活并促进细胞迁移。

DGC-specific mutations maintained cancer cell survival and promoted cell migration via ROCK inactivation.

作者信息

Nishizawa Takashi, Nakano Kiyotaka, Harada Aya, Kakiuchi Miwako, Funahashi Shin-Ichi, Suzuki Masami, Ishikawa Shumpei, Aburatani Hiroyuki

机构信息

Department for Research, Forerunner Pharma Research Co., Ltd., Tokyo, Japan.

Genome Science Division, Research Center for Advanced Science and Technology, The University of Tokyo, Tokyo, Japan.

出版信息

Oncotarget. 2018 May 1;9(33):23198-23207. doi: 10.18632/oncotarget.25269.

Abstract

missense mutations exist specifically in diffuse type gastric cancers (DGC) and are considered one of the DGC driver genes, but it is not fully understood how mutations contribute to DGC development. Here we examined how mutations affect cancer cell survival and cell motility. We revealed that cell survival was maintained by specific mutation sites, namely G17, Y42, and L57. Because these functional mutations suppressed MLC2 phosphorylation and actin stress fiber formation, we realized they act in a dominant-negative fashion against the ROCK pathway. Through the same inactivating mechanism that maintained cell survival, mutations also increased cell migration activity. Cell survival and migration studies on () fusions, which are known to be mutually exclusive to mutations, showed that fusions complemented cell survival under knockdown condition and also induced cell migration. Site-directed mutagenesis analysis revealed the importance of the GAP domain and indicated that fusions maintained RHOA in the inactive form. Taken together, these findings show that the inactivation of ROCK would be a key step in DGC development, so ROCK activation might provide novel therapeutic opportunities.

摘要

错义突变 specifically存在于弥漫型胃癌(DGC)中,被认为是DGC的驱动基因之一,但突变如何促进DGC发展尚不完全清楚。在此,我们研究了突变如何影响癌细胞的存活和细胞运动性。我们发现细胞存活由特定突变位点维持,即G17、Y42和L57。由于这些功能性突变抑制了MLC2磷酸化和肌动蛋白应力纤维形成,我们意识到它们以显性负性方式作用于ROCK途径。通过维持细胞存活的相同失活机制,突变也增加了细胞迁移活性。对已知与突变相互排斥的()融合体进行的细胞存活和迁移研究表明,融合体在敲低条件下补充了细胞存活并诱导了细胞迁移。定点诱变分析揭示了GAP结构域的重要性,并表明融合体使RHOA保持非活性形式。综上所述,这些发现表明ROCK的失活可能是DGC发展的关键步骤,因此ROCK激活可能提供新的治疗机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df0e/5955407/b37fcf431b9e/oncotarget-09-23198-g001.jpg

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