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A Role for Mitogen-activated Protein Kinase in the Spindle Assembly Checkpoint in XTC Cells

机译:丝裂素活化蛋白激酶在XTC细胞中的主轴装配检查站中的作用。

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摘要

The spindle assembly checkpoint prevents cells whose spindles are defective or chromosomes are misaligned from initiating anaphase and leaving mitosis. Studies of Xenopus egg extracts have implicated the Erk2 mitogen-activated protein kinase (MAP kinase) in this checkpoint. Other studies have suggested that MAP kinases might be important for normal mitotic progression. Here we have investigated whether MAP kinase function is required for mitotic progression or the spindle assembly checkpoint in vivo in Xenopus tadpole cells (XTC). We determined that Erk1 and/or Erk2 are present in the mitotic spindle during prometaphase and metaphase, consistent with the idea that MAP kinase might regulate or monitor the status of the spindle. Next, we microinjected purified recombinant XCL100, a Xenopus MAP kinase phosphatase, into XTC cells in various stages of mitosis to interfere with MAP kinase activation. We found that mitotic progression was unaffected by the phosphatase. However, XCL100 rendered the cells unable to remain arrested in mitosis after treatment with nocodazole. Cells injected with phosphatase at prometaphase or metaphase exited mitosis in the presence of nocodazole—the chromosomes decondensed and the nuclear envelope re-formed—whereas cells injected with buffer or a catalytically inactive XCL100 mutant protein remained arrested in mitosis. Coinjection of constitutively active MAP kinase kinase-1, which opposes XCL100's effects on MAP kinase, antagonized the effects of XCL100. Since the only known targets of MAP kinase kinase-1 are Erk1 and Erk2, these findings argue that MAP kinase function is required for the spindle assembly checkpoint in XTC cells.
机译:纺锤体装配检查点可防止纺锤体有缺陷或染色体错位的细胞启动后期分裂并留下有丝分裂。非洲爪蟾卵提取物的研究已牵涉到该检查点中的Erk2丝裂原活化蛋白激酶(MAP激酶)。其他研究表明,MAP激酶可能对正常的有丝分裂进程很重要。在这里,我们调查了非洲爪蟾t细胞(XTC)中的有丝分裂进程或纺锤体装配检查点是否需要MAP激酶功能。我们确定在分裂中期和中期,有丝分裂纺锤体中存在Erk1和/或Erk2,这与MAP激酶可能调节或监测纺锤体状态的想法一致。接下来,我们在有丝分裂的各个阶段将纯化的重组XCL100(非洲爪蟾MAP激酶磷酸酶)微注射到XTC细胞中,以干扰MAP激酶的活化。我们发现有丝分裂进程不受磷酸酶的影响。然而,XCL100使细胞无法在用诺考达唑处理后仍保留在有丝分裂中。在诺考达唑的存在下,在中期或中期注射磷酸酶的细胞退出有丝分裂-染色体解聚,核被膜重新形成-而注射了缓冲液或无催化活性的XCL100突变蛋白的细胞仍被阻滞在有丝分裂中。与XCL100对MAP激酶的作用相反的组成性活性MAP激酶激酶-1的共注射拮抗了XCL100的作用。由于MAP激酶激酶1的唯一已知靶标是Erk1和Erk2,因此这些发现认为MAP激酶功能是XTC细胞中纺锤体装配检查点所必需的。

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