Temasek Life Sciences Laboratory, National University of Singapore, Singapore City, Singapore.
Department of Biological Sciences, National University of Singapore, Singapore City, Singapore.
EMBO Rep. 2020 May 6;21(5):e48843. doi: 10.15252/embr.201948843. Epub 2020 Mar 18.
Pruning that selectively eliminates inappropriate projections is crucial for sculpting neural circuits during development. During Drosophila metamorphosis, ddaC sensory neurons undergo dendrite-specific pruning in response to the steroid hormone ecdysone. However, the understanding of the molecular mechanisms underlying dendrite pruning remains incomplete. Here, we show that protein phosphatase 2A (PP2A) is required for dendrite pruning. The catalytic (Microtubule star/Mts), scaffolding (PP2A-29B), and two regulatory subunits (Widerborst/Wdb and Twins/Tws) play important roles in dendrite pruning. Functional analyses indicate that PP2A, via Wdb, facilitates the expression of Sox14 and Mical prior to dendrite pruning. Furthermore, PP2A, via Tws, governs the minus-end-out orientation of microtubules (MTs) in the dendrites. Moreover, the levels of Klp10A, a MT depolymerase, increase when PP2A is compromised. Attenuation of Klp10A fully rescues the MT orientation defects in mts or pp2a-29b RNAi ddaC neurons, suggesting that PP2A governs dendritic MT orientation by suppressing Klp10A levels and/or function. Taken together, this study sheds light on a novel function of PP2A in regulating dendrite pruning and dendritic MT polarity in sensory neurons.
选择性消除不合适投射的修剪对于在发育过程中塑造神经回路至关重要。在果蝇变态过程中,ddaC 感觉神经元对蜕皮激素作出反应,经历树突特异性修剪。然而,对于树突修剪背后的分子机制的理解仍然不完整。在这里,我们表明蛋白磷酸酶 2A(PP2A)是树突修剪所必需的。催化亚基(微管星/Mts)、支架亚基(PP2A-29B)和两个调节亚基(Widerborst/Wdb 和 Twins/Tws)在树突修剪中发挥重要作用。功能分析表明,PP2A 通过 Wdb 在树突修剪之前促进 Sox14 和 Mical 的表达。此外,PP2A 通过 Tws 控制树突中微管(MTs)的负端向外取向。此外,当 PP2A 受到干扰时,Klp10A(一种 MT 解聚酶)的水平增加。Klp10A 的衰减完全挽救了 mts 或 pp2a-29b RNAi ddaC 神经元中 MT 取向缺陷,表明 PP2A 通过抑制 Klp10A 水平和/或功能来控制树突 MT 取向。总之,这项研究揭示了 PP2A 在调节感觉神经元中的树突修剪和树突 MT 极性中的新功能。