Coles Garry L, Baglia Laurel A, Ackerman Kate G
Department of Biomedical Genetics, University of Rochester Medical Center, Rochester, New York, United States of America.
Department of Pediatrics, University of Rochester Medical Center, Rochester, New York, United States of America; Center for Pediatric Biomedical Research, University of Rochester Medical Center, Rochester, New York, United States of America.
PLoS Genet. 2015 Oct 6;11(10):e1005525. doi: 10.1371/journal.pgen.1005525. eCollection 2015 Oct.
The cell cycle must be tightly coordinated for proper control of embryonic development and for the long-term maintenance of organs such as the lung. There is emerging evidence that Kinesin family member 7 (Kif7) promotes Hedgehog (Hh) signaling during embryonic development, and its misregulation contributes to diseases such as ciliopathies and cancer. Kif7 encodes a microtubule interacting protein that controls Hh signaling through regulation of microtubule dynamics within the primary cilium. However, whether Kif7 has a function in nonciliated cells remains largely unknown. The role Kif7 plays in basic cell biological processes like cell proliferation or cell cycle progression also remains to be elucidated. Here, we show that Kif7 is required for coordination of the cell cycle, and inactivation of this gene leads to increased cell proliferation in vivo and in vitro. Immunostaining and transmission electron microscopy experiments show that Kif7dda/dda mutant lungs are hyperproliferative and exhibit reduced alveolar epithelial cell differentiation. KIF7 depleted C3H10T1/2 fibroblasts and Kif7dda/dda mutant mouse embryonic fibroblasts have increased growth rates at high cellular densities, suggesting that Kif7 may function as a general regulator of cellular proliferation. We ascertained that in G1, Kif7 and microtubule dynamics regulate the expression and activity of several components of the cell cycle machinery known to control entry into S phase. Our data suggest that Kif7 may function to regulate the maintenance of the respiratory airway architecture by controlling cellular density, cell proliferation, and cycle exit through its role as a microtubule associated protein.
细胞周期必须紧密协调,以恰当控制胚胎发育以及维持诸如肺等器官的长期功能。越来越多的证据表明,驱动蛋白家族成员7(Kif7)在胚胎发育过程中促进刺猬信号通路(Hh)信号传导,其调控异常会导致诸如纤毛病和癌症等疾病。Kif7编码一种微管相互作用蛋白,该蛋白通过调节初级纤毛内的微管动力学来控制Hh信号传导。然而,Kif7在非纤毛细胞中是否具有功能在很大程度上仍不清楚。Kif7在细胞增殖或细胞周期进程等基本细胞生物学过程中所起的作用也有待阐明。在此,我们表明Kif7是细胞周期协调所必需的,该基因失活会导致体内和体外细胞增殖增加。免疫染色和透射电子显微镜实验表明,Kif7dda/dda突变体肺组织具有过度增殖性,且肺泡上皮细胞分化减少。KIF7缺失的C3H10T1/2成纤维细胞和Kif7dda/dda突变体小鼠胚胎成纤维细胞在高细胞密度下生长速率增加,这表明Kif7可能作为细胞增殖的一般调节因子发挥作用。我们确定,在G1期,Kif7和微管动力学调节已知控制进入S期的细胞周期机制的几个组分的表达和活性。我们的数据表明,Kif7可能通过作为微管相关蛋白的作用,通过控制细胞密度、细胞增殖和周期退出,来调节呼吸道结构的维持。