Laboratory of Biological Science, Graduate School of Frontier Biosciences and Graduate School of Medicine, Osaka University, Osaka 565-0871, Japan.
Cell. 2012 Jan 20;148(1-2):189-200. doi: 10.1016/j.cell.2011.10.052.
Coordinated beating of cilia in the trachea generates a directional flow of mucus required to clear the airways. Each cilium originates from a barrel-shaped basal body, from the side of which protrudes a structure known as the basal foot. We generated mice in which exons 6 and 7 of Odf2, encoding a basal body and centrosome-associated protein Odf2/cenexin, are disrupted. Although Odf2(ΔEx6,7/ΔEx6,7) mice form cilia, ciliary beating is uncoordinated, and the mice display a coughing/sneezing phenotype. Whereas residual expression of the C-terminal region of Odf2 in these mice is sufficient for ciliogenesis, the resulting basal bodies lack basal feet. Loss of basal feet in ciliated epithelia disrupted the polarized organization of apical microtubule lattice without affecting planar cell polarity. The requirement for Odf2 in basal foot formation, therefore, reveals a crucial role of this structure in the polarized alignment of basal bodies and coordinated ciliary beating.
气管中纤毛的协调摆动产生了清除气道所需的定向黏液流。每个纤毛都起源于一个桶状的基体,从基体的一侧伸出一个被称为基体脚底的结构。我们生成了 Odf2 的外显子 6 和 7(编码基体和中心体相关蛋白 Odf2/cenexin)缺失的小鼠。尽管 Odf2(ΔEx6,7/ΔEx6,7) 小鼠形成纤毛,但纤毛的摆动不协调,并且这些小鼠表现出咳嗽/打喷嚏的表型。尽管这些小鼠中 Odf2 的 C 端区域的残留表达足以进行纤毛发生,但由此产生的基体缺乏基体脚底。纤毛上皮中基体脚底的缺失破坏了顶端微管晶格的极化组织,而不影响平面细胞极性。因此,Odf2 在基体脚底形成中的必要性揭示了该结构在基体的极化排列和协调的纤毛摆动中的关键作用。