Department of Cell Biology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta T6G 2H7, Canada.
J Neurosci Methods. 2013 Mar 30;214(1):91-104. doi: 10.1016/j.jneumeth.2013.01.006. Epub 2013 Jan 21.
We have adapted HaloTag® (HT) technology for use in compartmented cultures of rat sympathetic neurons in order to provide a technique that can be broadly applied to studies of the retrograde transport of molecules that play roles in neurotrophin signaling. Transfected neurons expressing HT protein alone, HT protein fused to the p75 neurotrophin receptor (p75NTR) or HT protein fused to tubulin α-1B were maintained in compartmented cultures in which cell bodies and proximal axons of rat sympathetic neurons reside in proximal compartments and their distal axons extend into distal compartments. HT ligand containing a fluorescent tetramethylrhodamine (TMR) label was applied either in the distal compartments or the proximal compartments, and the transport of labeled proteins was assayed by gel fluorescence imaging and TMR immunoblot. HT protein expressed alone displayed little or no retrograde transport. HT protein fused to either the intracellular C-terminus or the extracellular N-terminus of p75NTR was retrogradely transported. The retrograde transport of p75NTR was augmented when the distal axons were provided with nerve growth factor (NGF), brain-derived neurotrophic factor (BDNF) or antibodies to BDNF. The anterograde transport of HT protein fused to the N-terminus of tubulin α-1B was also demonstrated. We conclude that retrograde transport of HT fusion proteins provides a powerful and novel approach in studies of axonal transport.
我们已经将 HaloTag®(HT)技术用于大鼠交感神经元分隔培养中,以便提供一种可广泛应用于研究神经生长因子信号转导中起作用的分子逆行转运的技术。单独表达 HT 蛋白、与 p75 神经营养因子受体(p75NTR)融合的 HT 蛋白或与微管蛋白 α-1B 融合的 HT 蛋白的转染神经元在分隔培养中得到维持,其中大鼠交感神经元的胞体和近段轴突位于近段隔室中,其远段轴突延伸到远段隔室中。含有荧光四甲基罗丹明(TMR)标记的 HT 配体被施加到远段隔室或近段隔室中,通过凝胶荧光成像和 TMR 免疫印迹测定标记蛋白的转运。单独表达的 HT 蛋白显示很少或没有逆行转运。与 p75NTR 的胞内 C 末端或胞外 N 末端融合的 HT 蛋白被逆行转运。当远段轴突提供神经生长因子(NGF)、脑源性神经营养因子(BDNF)或 BDNF 抗体时,p75NTR 的逆行转运增加。还证明了与微管蛋白 α-1B 的 N 末端融合的 HT 蛋白的顺行转运。我们得出结论,HT 融合蛋白的逆行转运为轴突转运研究提供了一种强大而新颖的方法。