Universit de Technologie de Compigne, CNRS UMR 6600, Compigne, France.
Cell Biol Int. 2012 Mar 1;36(3):311-9. doi: 10.1042/CBI20110069.
In the highly metastatic B16F10 melanoma cell line, activation of the signalling molecules that promote cell proliferation and survival on conventional adhesive culture dishes may also be responsible for the growth and resistance to anoikis of aggregates on a non-adhesive substratum. We have examined the influence of bacterial ADP-ribosyltransferases C3-like exoenzymes, which selectively modify RhoA, B and C proteins and inhibit signal pathways controlled by them. RNA interference [siRNA (small interfering RNA) Akt (also known as protein kinase B)] and a PI3K (phosphoinositide 3-kinase) inhibitor were used to analyse the changes caused by inhibiting the PI3K/Akt pathway. Inhibiting the activation of RhoA, B, C and Akt expression resulted in a decrease of the number of cells cultured in aggregates, and caspase 3 activation. RhoA activation and RhoB and RhoC expression were controlled by Akt, but not RhoA expression. Inhibiting Akt and RhoA reduced the expression of α5 integrin, and inactivated FAK (focal adhesion kinase) in B16F10 cells cultured as aggregates. Thus, inhibiting Rho subfamily proteins and Akt expression inactivates the FAK pathway and induces anoikis in anoikis-resistant cells. The activation of RhoA in melanoma cells can depend on PI3K/Akt activation, suggesting that PI3K/Akt is a suitable target for new therapeutic approaches.
在高转移性 B16F10 黑色素瘤细胞系中,促进细胞增殖和存活的信号分子的激活,可能也是导致非黏附基质上聚集物生长和抵抗失巢凋亡的原因。我们研究了细菌 ADP-核糖基转移酶 C3 样外切酶的影响,这些酶选择性修饰 RhoA、B 和 C 蛋白,并抑制受其调控的信号通路。通过 RNA 干扰(siRNA(小干扰 RNA)Akt(也称为蛋白激酶 B))和 PI3K(磷酸肌醇 3-激酶)抑制剂分析抑制 PI3K/Akt 通路引起的变化。抑制 RhoA、B、C 和 Akt 表达的激活会导致培养在聚集物中的细胞数量减少,并激活 caspase 3。RhoA 的激活和 RhoB 和 RhoC 的表达受 Akt 控制,但不受 RhoA 表达控制。抑制 Akt 和 RhoA 降低了 B16F10 细胞培养为聚集物时α5 整合素的表达,并使 FAK(黏着斑激酶)失活。因此,抑制 Rho 亚家族蛋白和 Akt 表达使 FAK 通路失活,并诱导失巢凋亡抗性细胞发生失巢凋亡。黑色素瘤细胞中 RhoA 的激活可能依赖于 PI3K/Akt 的激活,这表明 PI3K/Akt 是新的治疗方法的合适靶点。