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Distinct requirements of E2f4 versus E2f5 activity for multiciliated cell development in the zebrafish embryo

机译:E2f4与E2f5活性对斑马鱼胚胎中多纤毛细胞发育的不同要求

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Multiciliated cells (MCCs) differentiate arrays of motile cilia that beat to drive fluid flow over epithelia. Recent studies have established two Geminin family coiled-coil containing nuclear regulatory proteins, Gmnc and Multicilin (Mci), in the specification and differentiation of the MCCs. Both Gmnc and Mci are devoid of a DNA binding domain: they regulate transcription by associating with E2f family transcription factors, notably E2f4 and E2f5. Here, we have studied the relative contribution of these two E2f factors in MCC development using the zebrafish embryo, which differentiates MCCs within kidney tubules and the nose. We found that while E2f4 is fully dispensable, E2f5 is essential for MCCs to form in the kidney tubules. Moreover, using a variety of double mutant combinations we show that E2f5 has a more prominent role in MCC development in the zebrafish than E2f4. This contrasts with current evidence from the mouse, where E2f4 seems to be more important. Thus, distinct combinatorial activities of the E2f4 and E2f5 proteins regulate the specification and differentiation of MCCs in zebrafish and mice.
机译:多纤毛细胞(MCC)区分运动的纤毛阵列,这些纤毛搏动以驱动流体流过上皮。最近的研究已经建立了两个含有核调节蛋白的Geminin家族卷曲螺旋,即Gmnc和Multicilin(Mci),用于MCC的规范和区分。 Gmnc和Mci都没有DNA结合域:它们通过与E2f家族转录因子(尤其是E2f4和E2f5)相关联来调节转录。在这里,我们使用斑马鱼胚胎研究了这两个E2f因子在MCC发育中的相对贡献,该斑马鱼胚胎区分了肾小管和鼻子内的MCC。我们发现,尽管E2f4是完全不需要的,但E2f5对于MCC在肾小管中形成至关重要。此外,使用各种双重突变体组合,我们显示E2f5在斑马鱼的MCC发育中比E2f4具有更突出的作用。这与来自小鼠的当前证据形成对比,其中E2f4似乎更重要。因此,E2f4和E2f5蛋白的独特组合活性调节斑马鱼和小鼠中MCC的规格和分化。

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