Villalonga P, Rius E, Bachs O, Agell N
Department de Biologia Cellular i Anatomia Patològica, Institut d'Investigacions Biomèdiques August Pi i Sunyer, Facultat de Medicina, Universitat de Barcelona, Spain.
Oncogene. 2000 Feb 3;19(5):690-9. doi: 10.1038/sj.onc.1203341.
The elements of the cell cycle regulatory machinery activated by the oncogenic form of Ras, [Lys61]N-Ras, have been analysed in NIH3T3 cells. We demonstrate that [Lys61]N-Ras expression is able to induce full cdk4 activation. As already reported, oncogenic Ras expression was sufficient to induce cyclin D1 and p21cip1 expression and their association with cdk4. Furthermore, serum-starved [Lys61]N-Ras NIH3T3 cells showed nuclear accumulation of cyclin D1 and cdk4 not observed in serum-starved NIH3T3 cells. This accumulation of cdk4 into the cell nucleus observed in serum-starved [Lys61]N-Ras NIH3T3 cells was inhibited by a microinjection of neutralizing anti-Ras antibodies. Thus, active [Lys61]N-Ras was a sufficient signal to induce nuclear accumulation of cyclin D1/cdk4, leading to its full activation. Transfection of [Lys61]N-Ras NIH3T3 cells with an inactive form of MEK or their treatment with PD 98059, showed that nuclear translocation of cdk4 was MEK dependent. Interestingly, cells constitutively expressing [Lys61]N-Ras did not inactivate pRb and did not proliferate in the absence of serum. This may be due to the fact that although association of cdk2 with cyclin E and the translocation of those complexes to the nucleus were achieved, [Lys61]N-Ras expression was not sufficient to induce cdk2 activation. The high levels of p27(kip1) that were found in cyclin E/cdk2 complexes may be responsible for the inability of oncogenic Ras to activate this kinase. In consequence, oncogenic alterations that lead to a decrease in p27kip1 bound to cyclin E may cooperate with Ras to induce full cdk2 activation, pRb inactivation and thus cell proliferation.
已在NIH3T3细胞中分析了由致癌形式的Ras即[Lys61]N-Ras激活的细胞周期调控机制的组成部分。我们证明[Lys61]N-Ras的表达能够诱导cdk4完全激活。如先前报道的那样,致癌性Ras的表达足以诱导细胞周期蛋白D1和p21cip1的表达以及它们与cdk4的结合。此外,血清饥饿的[Lys61]N-Ras NIH3T3细胞显示出细胞周期蛋白D1和cdk4的核内积累,而血清饥饿的NIH3T3细胞中未观察到这种现象。在血清饥饿的[Lys61]N-Ras NIH3T3细胞中观察到的cdk4向细胞核的这种积累被中和性抗Ras抗体的显微注射所抑制。因此,活性[Lys61]N-Ras是诱导细胞周期蛋白D1/cdk4核内积累并导致其完全激活的充分信号。用无活性形式的MEK转染[Lys61]N-Ras NIH3T3细胞或用PD 98059处理它们,结果显示cdk4的核转位是MEK依赖性的。有趣的是,组成性表达[Lys61]N-Ras的细胞在无血清的情况下不会使pRb失活且不会增殖。这可能是由于尽管实现了cdk2与细胞周期蛋白E的结合以及这些复合物向细胞核的转位,但[Lys61]N-Ras的表达不足以诱导cdk2激活。在细胞周期蛋白E/cdk2复合物中发现的高水平p27(kip1)可能是致癌性Ras无法激活该激酶的原因。因此,导致与细胞周期蛋白E结合的p27kip1减少的致癌性改变可能与Ras协同作用以诱导cdk2完全激活、pRb失活,从而促进细胞增殖。