Nishimura Takashi, Yamaguchi Tomoya, Kato Katsuhiro, Yoshizawa Masato, Nabeshima Yo-ichi, Ohno Shigeo, Hoshino Mikio, Kaibuchi Kozo
Department of Cell Pharmacology, Graduate School of Medicine, Nagoya University, 65 Tsurumai, Showa, Nagoya, Aichi 466-8550, Japan.
Nat Cell Biol. 2005 Mar;7(3):270-7. doi: 10.1038/ncb1227. Epub 2005 Feb 20.
A polarity complex of PAR-3, PAR-6 and atypical protein kinase C (aPKC) functions in various cell-polarization events, including neuron specification. The small GTPase Cdc42 binds to PAR-6 and regulates cell polarity. However, little is known about the downstream signals of the Cdc42-PAR protein complex. Here, we found that PAR-3 directly interacted with STEF/Tiam1, which are Rac-specific guanine nucleotide-exchange factors, and that STEF formed a complex with PAR-3-aPKC-PAR-6-Cdc42-GTP. Cdc42 induces lamellipodia in a Rac-dependent manner in N1E-115 neuroblastoma cells. Disruption of Cdc42-PAR-6 or PAR-3-STEF binding inhibited Cdc42-induced lamellipodia but not filopodia. The isolated STEF-binding PAR-3 fragment was sufficient to induce lamellipodia independently of Cdc42 and PAR-6. PAR-3 is required for Cdc42-induced Rac activation, but is not essential for lamellipodia formation itself. In cultured hippocampal neurons, STEF accumulated at the tip of the growing axon and colocalized with PAR-3. The spatio-temporal activation and signalling of Cdc42-PAR-6-PAR-3-STEF/Tiam1-Rac seem to be involved in neurite growth and axon specification. We propose that the PAR-6-PAR-3 complex mediates Cdc42-induced Rac activation by means of STEF/Tiam1, and that this process seems to be required for the establishment of neuronal polarity.
由PAR-3、PAR-6和非典型蛋白激酶C(aPKC)组成的极性复合物在包括神经元特化在内的各种细胞极化事件中发挥作用。小GTP酶Cdc42与PAR-6结合并调节细胞极性。然而,对于Cdc42-PAR蛋白复合物的下游信号却知之甚少。在此,我们发现PAR-3直接与Rac特异性鸟嘌呤核苷酸交换因子STEF/Tiam1相互作用,并且STEF与PAR-3-aPKC-PAR-6-Cdc42-GTP形成复合物。在N1E-115神经母细胞瘤细胞中,Cdc42以Rac依赖的方式诱导片状伪足形成。破坏Cdc42与PAR-6或PAR-3与STEF的结合会抑制Cdc42诱导的片状伪足形成,但不影响丝状伪足。分离出的与STEF结合的PAR-3片段足以独立于Cdc42和PAR-6诱导片状伪足形成。PAR-3是Cdc42诱导的Rac激活所必需的,但对于片状伪足形成本身并非必不可少。在培养的海马神经元中,STEF聚集在生长轴突的末端并与PAR-3共定位。Cdc42-PAR-6-PAR-3-STEF/Tiam1-Rac的时空激活和信号传导似乎参与了神经突生长和轴突特化。我们提出,PAR-6-PAR-3复合物通过STEF/Tiam1介导Cdc42诱导的Rac激活,并且这一过程似乎是建立神经元极性所必需的。