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在亚效性后期促进复合体突变体中观察到的发育缺陷与细胞周期异常有关。

Developmental defects observed in hypomorphic anaphase-promoting complex mutants are linked to cell cycle abnormalities.

作者信息

Shakes Diane C, Sadler Penny L, Schumacher Jill M, Abdolrasulnia Maziar, Golden Andy

机构信息

Department of Biology, College of William and Mary, Williamsburg, Virginia 23187, USA.

出版信息

Development. 2003 Apr;130(8):1605-20. doi: 10.1242/dev.00385.

Abstract

In C. elegans, mutants in the anaphase-promoting complex or cyclosome (APC/C) exhibit defects in germline proliferation, the formation of the vulva and male tail, and the metaphase to anaphase transition of meiosis I. Oocytes lacking APC/C activity can be fertilized but arrest in metaphase of meiosis I and are blocked from further development. To examine the cell cycle and developmental consequences of reducing but not fully depleting APC/C activity, we analyzed defects in embryos and larvae of mat-1/cdc-27 mutants grown at semi-permissive temperatures. Hypomorphic embryos developed to the multicellular stage but were slow to complete meiosis I and displayed aberrant meiotic chromosome separation. More severely affected embryos skipped meiosis II altogether and exhibited striking defects in meiotic exit. These latter embryos failed to produce normal eggshells or establish normal asymmetries prior to the first mitotic division. In developing larvae, extended M-phase delays in late-dividing cell lineages were associated with defects in the morphogenesis of the male tail. This study reveals the importance of dosage-specific mutants in analyzing molecular functions of a ubiquitously functioning protein within different cell types and tissues, and striking correlations between specific abnormalities in cell cycle progression and particular developmental defects.

摘要

在秀丽隐杆线虫中,后期促进复合物或细胞周期体(APC/C)的突变体在生殖系增殖、阴门和雄性尾部的形成以及减数分裂I中期到后期的转变方面表现出缺陷。缺乏APC/C活性的卵母细胞能够受精,但会停滞在减数分裂I中期,并且无法进一步发育。为了研究降低而非完全消除APC/C活性对细胞周期和发育的影响,我们分析了在半允许温度下生长的mat-1/cdc-27突变体的胚胎和幼虫中的缺陷。亚效等位基因胚胎发育到多细胞阶段,但完成减数分裂I的速度较慢,并且表现出异常的减数分裂染色体分离。受影响更严重的胚胎完全跳过减数分裂II,并且在减数分裂退出时表现出明显的缺陷。这些后期胚胎无法产生正常的卵壳,也无法在第一次有丝分裂之前建立正常的不对称性。在发育中的幼虫中,后期分裂细胞谱系中延长的M期延迟与雄性尾部形态发生的缺陷有关。这项研究揭示了剂量特异性突变体在分析不同细胞类型和组织中普遍发挥作用的蛋白质的分子功能方面的重要性,以及细胞周期进程中的特定异常与特定发育缺陷之间的显著相关性。

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