Cai H, Reed R R
Howard Hughes Medical Institutes, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
J Neurosci. 1999 Aug 1;19(15):6519-27. doi: 10.1523/JNEUROSCI.19-15-06519.1999.
Neuropilin-1 (Npn-1), a receptor for semaphorin III, mediates the guidance of growth cones on extending neurites. The molecular mechanism of Npn-1 signaling remains unclear. We have used a yeast two-hybrid system to isolate a protein that interacts with the cytoplasmic domain of Npn-1. This Npn-1-interacting protein (NIP) contains a central PSD-95/Dlg/ZO-1 (PDZ) domain and a C-terminal acyl carrier protein domain. The physiological interaction of Npn-1 and NIP is supported by co-immunoprecipitation of these two proteins in extracts from a heterologous expression system and from a native tissue. The C-terminal three amino acids of Npn-1 (S-E-A-COOH), which is conserved from Xenopus to human, is responsible for interaction with the PDZ domain-containing C-terminal two-thirds of NIP. NIP as well as Npn-1 are broadly expressed in mice as assayed by Northern and Western analysis. Immunohistochemistry and in situ hybridization experiments revealed that NIP expression overlaps with that of Npn-1. NIP has been independently cloned as RGS-GAIP-interacting protein (GIPC), where it was identified by virtue of its interaction with the C terminus of RGS-GAIP and suggested to participate in clathrin-coated vesicular trafficking. We suggest that NIP and GIPC may participate in regulation of Npn-1-mediated signaling as a molecular adapter that couples Npn-1 to membrane trafficking machinery in the dynamic axon growth cone.
神经纤毛蛋白-1(Npn-1)是信号素III的受体,介导生长锥在延伸神经突上的导向作用。Npn-1信号传导的分子机制尚不清楚。我们利用酵母双杂交系统分离出一种与Npn-1胞质结构域相互作用的蛋白质。这种与Npn-1相互作用的蛋白质(NIP)包含一个中央的PSD-95/Dlg/ZO-1(PDZ)结构域和一个C端酰基载体蛋白结构域。在异源表达系统和天然组织提取物中这两种蛋白质的共免疫沉淀结果支持了Npn-1与NIP的生理性相互作用。Npn-1的C端三个氨基酸(S-E-A-COOH),从非洲爪蟾到人类都保守,负责与含PDZ结构域的NIP的C端三分之二相互作用。通过Northern和Western分析检测发现,NIP以及Npn-1在小鼠中广泛表达。免疫组织化学和原位杂交实验表明,NIP的表达与Npn-1的表达重叠。NIP已被独立克隆为RGS-GAIP相互作用蛋白(GIPC),它是通过与RGS-GAIP的C端相互作用而被鉴定出来的,并被认为参与网格蛋白包被小泡的运输。我们认为,NIP和GIPC可能作为一种分子适配器参与Npn-1介导的信号调节,该适配器在动态轴突生长锥中将Npn-1与膜运输机制偶联起来。