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Kif3a 通过纤毛和非纤毛机制调节听觉毛细胞的平面极化。

Kif3a regulates planar polarization of auditory hair cells through both ciliary and non-ciliary mechanisms.

机构信息

Department of Cell Biology, University of Virginia Health System, Charlottesville, VA 22908, USA.

出版信息

Development. 2011 Aug;138(16):3441-9. doi: 10.1242/dev.065961. Epub 2011 Jul 13.

Abstract

Auditory hair cells represent one of the most prominent examples of epithelial planar polarity. In the auditory sensory epithelium, planar polarity of individual hair cells is defined by their V-shaped hair bundle, the mechanotransduction organelle located on the apical surface. At the tissue level, all hair cells display uniform planar polarity across the epithelium. Although it is known that tissue planar polarity is controlled by non-canonical Wnt/planar cell polarity (PCP) signaling, the hair cell-intrinsic polarity machinery that establishes the V-shape of the hair bundle is poorly understood. Here, we show that the microtubule motor subunit Kif3a regulates hair cell polarization through both ciliary and non-ciliary mechanisms. Disruption of Kif3a in the inner ear led to absence of the kinocilium, a shortened cochlear duct and flattened hair bundle morphology. Moreover, basal bodies are mispositioned along both the apicobasal and planar polarity axes of mutant hair cells, and hair bundle orientation was uncoupled from the basal body position. We show that a non-ciliary function of Kif3a regulates localized cortical activity of p21-activated kinases (PAK), which in turn controls basal body positioning in hair cells. Our results demonstrate that Kif3a-PAK signaling coordinates planar polarization of the hair bundle and the basal body in hair cells, and establish Kif3a as a key component of the hair cell-intrinsic polarity machinery, which acts in concert with the tissue polarity pathway.

摘要

听觉毛细胞是上皮平面极性的最突出范例之一。在听觉感觉上皮中,单个毛细胞的平面极性由位于顶表面的机械转导细胞器 V 形毛束定义。在组织水平上,整个上皮中的所有毛细胞均表现出一致的平面极性。尽管已知组织平面极性受非典型 Wnt/平面细胞极性(PCP)信号控制,但建立毛束 V 形的毛细胞内在极性机制仍知之甚少。在这里,我们显示微管运动亚基 Kif3a 通过纤毛和非纤毛机制调节毛细胞极性。内耳中 Kif3a 的破坏导致动纤毛缺失、耳蜗管缩短和毛束形态扁平化。此外,基底体在突变毛细胞的顶底和平面极性轴上均错位,并且毛束取向与基底体位置解耦。我们表明 Kif3a 的非纤毛功能调节 p21 激活激酶(PAK)的局部皮质活性,而 PAK 又反过来控制毛细胞中的基底体定位。我们的结果表明,Kif3a-PAK 信号协调了毛细胞中毛束和基底体的平面极化,并确立了 Kif3a 作为毛细胞内在极性机制的关键组成部分,该机制与组织极性途径协同作用。

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