Lüscher B, Brizuela L, Beach D, Eisenman R N
Fred Hutchinson Cancer Research Center, Division of Basic Sciences, Seattle, WA 98104.
EMBO J. 1991 Apr;10(4):865-75. doi: 10.1002/j.1460-2075.1991.tb08019.x.
While the p34cdc2 kinase is considered to be a critical regulator of mitosis, its function has not yet been directly linked to one of the key events during the onset of mitosis: nuclear envelope breakdown. Here we show that a major structural protein of the nuclear envelope, lamin B2, is phosphorylated by p34cdc2. Results from two-dimensional phosphopeptide mapping experiments demonstrate that the p34cdc2-specific phosphopeptides represent both mitotic and interphase specific phosphorylations of lamin B2 and include the major interphase phosphorylation site. In mitotic cells we detected two distinct forms of lamin B2 which differ in electrophoretic mobility and in degree of phosphorylation. The phosphorylation pattern of lamin B2 generated in vitro by p34cdc2 was more closely related to the less phosphorylated mitotic lamin B2, suggesting that another kinase(s) in addition to p34cdc2 is involved in generating the mitotic phosphorylation pattern. In addition, we show that treatment of interphase cells with okadaic acid, a potent phosphatase inhibitor, leads to the acquisition of mitosis-specific phosphopeptides and can reversibly increase the detergent-solubility of lamin B2. However, the M-phase-like phosphorylation of lamin B2 in itself is not sufficient to induce its disassembly from the nuclear lamina suggesting that an additional event(s) besides phosphorylation is required.
虽然p34cdc2激酶被认为是有丝分裂的关键调节因子,但其功能尚未与有丝分裂开始时的关键事件之一:核膜破裂直接联系起来。在这里,我们表明核膜的一种主要结构蛋白,核纤层蛋白B2,被p34cdc2磷酸化。二维磷酸肽图谱实验结果表明,p34cdc2特异性磷酸肽代表核纤层蛋白B2的有丝分裂期和间期特异性磷酸化,包括主要的间期磷酸化位点。在有丝分裂细胞中,我们检测到两种不同形式的核纤层蛋白B2,它们在电泳迁移率和磷酸化程度上有所不同。由p34cdc2在体外产生的核纤层蛋白B2的磷酸化模式与磷酸化程度较低的有丝分裂期核纤层蛋白B2更密切相关,这表明除了p34cdc2之外,还有其他激酶参与产生有丝分裂期磷酸化模式。此外,我们表明,用强效磷酸酶抑制剂冈田酸处理间期细胞会导致获得有丝分裂特异性磷酸肽,并能可逆地增加核纤层蛋白B2的去污剂溶解性。然而,核纤层蛋白B2的M期样磷酸化本身不足以诱导其从核纤层解体,这表明除了磷酸化之外还需要其他事件。