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首页> 外文期刊>Journal of Cell Science >The metastasis gene NEDD9 product acts through integrin β3 and Src to promote mesenchymal motility and inhibit amoeboid motility
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The metastasis gene NEDD9 product acts through integrin β3 and Src to promote mesenchymal motility and inhibit amoeboid motility

机译:转移基因NEDD9产物通过整联蛋白β3和Src发挥作用,促进间充质运动并抑制变形虫运动

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Neural precursor expressed, developmentally down-regulated 9 (NEDD9), a member of the Cas family of signal transduction molecules, is amplified at the genetic level in melanoma, and elevated expression levels have been shown to correlate with melanoma progression and metastasis. NEDD9 interacts with the guanine nucleotide exchange factor DOCK3 to promote Rac activation and the elongated, mesenchymal-type of tumour cell invasion, but the molecular mechanisms through which NEDD9 promotes melanoma metastasis are not fully understood. We show that signalling through increased NEDD9 levels requires integrin β3 signalling, which leads to elevated phosphorylation of integrin β3. This results in increased Src and FAK but decreased ROCK signalling to drive elongated, mesenchymaltype invasion in environments that contain vitronectin. NEDD9 overexpression does not affect ROCK signalling through activation of RhoA but decreases ROCKII signalling through Src-dependent phosphorylation of a negative regulatory site Tyr722. In NEDD9-overexpressing melanoma cells, inhibition of Src with dasatinib results in a switch from Rac-driven elongated, mesenchymal-type invasion to ROCK-dependent rounded, amoeboid invasion. These findings brings into question whether dasatinib would work as a therapeutic agent to block melanoma invasion and metastasis. On the basis of the in vitro data presented here, a combination treatment of dasatinib and a ROCK inhibitor might be a better alternative in order to inhibit both elongated, mesenchymal-type and rounded, amoeboid motility.
机译:神经前体表达的,在发育中被下调的9(NEDD9)是Cas信号转导分子家族的成员,在黑色素瘤的基因水平被扩增,表达水平的升高与黑色素瘤的进展和转移相关。 NEDD9与鸟嘌呤核苷酸交换因子DOCK3相互作用,以促进Rac激活和细长的,间充质类型的肿瘤细胞侵袭,但NEDD9促进黑素瘤转移的分子机制尚不完全清楚。我们表明,通过增加NEDD9水平的信号传导需要整合素β3信号传导,从而导致整合素β3的磷酸化升高。这导致Src和FAK增加,但ROCK信号减少,从而在含有玻连蛋白的环境中驱动细长的间充质型侵入。 NEDD9的过表达不会通过激活RhoA来影响ROCK信号传导,但会通过负调控位点Tyr722的Src依赖性磷酸化来降低ROCKII信号传导。在过表达NEDD9的黑色素瘤细胞中,用达沙替尼抑制Src导致从Rac驱动的细长的间充质型侵袭转变为ROCK依赖性的圆形,类阿米巴侵袭。这些发现使人们怀疑达沙替尼是否可以作为治疗黑素瘤侵袭和转移的治疗剂。根据此处提供的体外数据,达沙替尼和ROCK抑制剂的联合治疗可能是更好的替代方法,以同时抑制拉长的间充质型和圆形的类动静脉蠕动。

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