Montcouquiol Mireille, Sans Nathalie, Huss David, Kach Jacob, Dickman J David, Forge Andrew, Rachel Rivka A, Copeland Neal G, Jenkins Nancy A, Bogani Debora, Murdoch Jennifer, Warchol Mark E, Wenthold Robert J, Kelley Matthew W
Section on Developmental Neuroscience, National Institute on Deafness and Other Communication Disorders, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Neurosci. 2006 May 10;26(19):5265-75. doi: 10.1523/JNEUROSCI.4680-05.2006.
Planar cell polarity (PCP) is a process in which cells develop with uniform orientation within the plane of an epithelium. To begin to elucidate the mechanisms of PCP in vertebrates, the localization of the protein Vangl2 (Van Gogh-like) was determined during the development of the mammalian cochlea. Results indicate that Vangl2 becomes asymmetrically localized to specific cell-cell boundaries along the axis of polarization and that this asymmetry is lost in PCP mutants. In addition, PDZ2 (postsynaptic density/Discs large/zona occludens 1), PDZ3, and PDZ4 of the PCP protein Scrb1 (Scribble) are shown to bind to the C-terminal PDZ binding domain of Vangl2, suggesting that Scrb1 plays a direct role in asymmetric targeting of Vangl2. Finally, Fz3 (Frizzled), a newly demonstrated mediator of PCP, is also asymmetrically localized in a pattern that matches that of Vangl2. The presence and asymmetry of Fz3 at the membrane is shown to be dependent on Vangl2. This result suggests a role for Vangl2 in the targeting or anchoring of Fz3, a hypothesis strengthened by the existence of a physical interaction between the two proteins. Together, our data support the idea that protein asymmetry plays an important role in the development of PCP, but the colocalization and interaction of Fz3 and Vangl2 suggests that novel PCP mechanisms exist in vertebrates.
平面细胞极性(PCP)是一个细胞在上皮平面内以统一方向发育的过程。为了开始阐明脊椎动物中PCP的机制,在哺乳动物耳蜗发育过程中确定了蛋白Vangl2(类梵高蛋白)的定位。结果表明,Vangl2沿极化轴不对称地定位于特定的细胞 - 细胞边界,并且这种不对称性在PCP突变体中消失。此外,PCP蛋白Scrb1(scribble)的PDZ2(突触后致密区/盘状大蛋白/紧密连接蛋白1)、PDZ3和PDZ4被证明与Vangl2的C末端PDZ结合结构域结合,这表明Scrb1在Vangl2的不对称靶向中起直接作用。最后,Fz3(卷曲蛋白)是一种新发现的PCP介质,其定位也不对称,且模式与Vangl2相匹配。Fz3在膜上的存在和不对称性被证明依赖于Vangl2。这一结果表明Vangl2在Fz3的靶向或锚定中起作用,这一假设因两种蛋白之间存在物理相互作用而得到加强。总之,我们的数据支持蛋白不对称在PCP发育中起重要作用的观点,但Fz3和Vangl2的共定位和相互作用表明脊椎动物中存在新的PCP机制。