Menzel Nicolas, Schneeberger Daniela, Raabe Thomas
University of Würzburg, Institut für Medizinische Strahlenkunde und Zellforschung, Versbacherstr. 5, 97078 Würzburg, Germany.
Mech Dev. 2007 Jan;124(1):78-90. doi: 10.1016/j.mod.2006.09.007. Epub 2006 Sep 30.
The p21 activated kinase (Pak) family of protein kinases are involved in many cellular functions like re-organisation of the cytoskeleton, transcriptional control, cell division, and survival. These pleiotropic actions are reflected in a plethora of known interacting proteins and phosphorylation substrates. Yet, the integration of a single Pak protein into signalling pathways controlling a particular developmental process are less well studied. For two of the three known Pak proteins in Drosophila melanogaster, D-Pak and Mbt, distinct functions during eye development have been established. In this study we undertook a genetic approach to identify proteins acting in the Mbt signalling pathway during photoreceptor cell morphogenesis. The genetic screen identified the actin depolymerisation factor Twinstar/Cofilin as one target of Mbt signalling. Twinstar/Cofilin becomes phosphorylated upon activation of Mbt. However, biochemical and genetic experiments question the role of the LIM domain protein kinase (Limk) as a major link between Mbt and Twinstar/Cofilin as it has been suggested for other PAK proteins. Constitutive activation of Mbt not only disturbs the actin cytoskeleton but also affects adherens junction organisation indicating a requirement of the protein in cell adhesion dependent processes during photoreceptor cell differentiation.
p21激活激酶(Pak)家族的蛋白激酶参与许多细胞功能,如细胞骨架重组、转录调控、细胞分裂和存活。这些多效性作用反映在大量已知的相互作用蛋白和磷酸化底物中。然而,单一Pak蛋白整合到控制特定发育过程的信号通路中的情况研究较少。对于果蝇中已知的三种Pak蛋白中的两种,即D-Pak和Mbt,它们在眼睛发育过程中的不同功能已经得到证实。在本研究中,我们采用遗传学方法来鉴定在光感受器细胞形态发生过程中作用于Mbt信号通路的蛋白。遗传筛选确定肌动蛋白解聚因子Twinstar/丝切蛋白是Mbt信号的一个靶点。Twinstar/丝切蛋白在Mbt激活后发生磷酸化。然而,生化和遗传学实验对LIM结构域蛋白激酶(Limk)作为Mbt与Twinstar/丝切蛋白之间的主要联系的作用提出了质疑,而其他PAK蛋白曾有过这样的推测。Mbt的组成型激活不仅会扰乱肌动蛋白细胞骨架,还会影响黏附连接的组织,这表明该蛋白在光感受器细胞分化过程中依赖细胞黏附的过程中是必需的。