首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Synthesis axonal transport and turnover of the high molecular weight microtubule-associated protein MAP 1A in mouse retinal ganglion cells: tubulin and MAP 1A display distinct transport kinetics
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Synthesis axonal transport and turnover of the high molecular weight microtubule-associated protein MAP 1A in mouse retinal ganglion cells: tubulin and MAP 1A display distinct transport kinetics

机译:小鼠视网膜神经节细胞中高分子量微管相关蛋白MAP 1A的合成轴突运输和更新:微管蛋白和MAP 1A显示出独特的运输动力学

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摘要

Microtubule-associated proteins (MAPs) in neurons establish functional associations with microtubules, sometimes at considerable distances from their site of synthesis. In this study we identified MAP 1A in mouse retinal ganglion cells and characterized for the first time its in vivo dynamics in relation to axonally transported tubulin. A soluble 340-kD polypeptide was strongly radiolabeled in ganglion cells after intravitreal injection of [35S]methionine or [3H]proline. This polypeptide was identified as MAP 1A on the basis of its co-migration on SDS gels with MAP 1A from brain microtubules; its co-assembly with microtubules in the presence of taxol or during cycles of assembly- disassembly; and its cross-reaction with well-characterized antibodies against MAP 1A in immunoblotting and immunoprecipitation assays. Glial cells of the optic nerve synthesized considerably less MAP 1A than neurons. The axoplasmic transport of MAP 1A differed from that of tubulin. Using two separate methods, we observed that MAP 1A advanced along optic axons at a rate of 1.0-1.2 mm/d, a rate typical of the Group IV (SCb) phase of transport, while tubulin moved 0.1-0.2 mm/d, a group V (SCa) transport rate. At least 13% of the newly synthesized MAP 1A entering optic axons was incorporated uniformly along axons into stationary axonal structures. The half-residence time of stationary MAP 1A in axons (55-60 d) was 4.6 times longer than that of MAP 1A moving in Group IV, indicating that at least 44% of the total MAP 1A in axons is stationary. These results demonstrate that cytoskeletal proteins that become functionally associated with each other in axons may be delivered to these sites at different transport rates. Stable associations between axonal constituents moving at different velocities could develop when these elements leave the transport vector and incorporate into the stationary cytoskeleton.
机译:神经元中的微管相关蛋白(MAP)与微管建立功能性关联,有时离其合成位点相距很远。在这项研究中,我们确定了小鼠视网膜神经节细胞中的MAP 1A,并首次表征了其与轴突运输的微管蛋白的体内动力学。玻璃体内注射[35S]蛋氨酸或[3H]脯氨酸后,在神经节细胞中强烈标记了可溶性340 kD多肽。根据该多肽在SDS凝胶上与脑微管中MAP 1A的共迁移,将其鉴定为MAP 1A。在紫杉醇存在下或在拆解周期中与微管共组装;及其在免疫印迹和免疫沉淀试验中与针对MAP 1A的特征明确的抗体的交叉反应。视神经的神经胶质细胞合成的MAP 1A比神经元少得多。 MAP 1A的轴质运输与微管蛋白的不同。使用两种不同的方法,我们观察到MAP 1A以1.0-1.2 mm / d的速度沿视轴突前进,这是IV组(SCb)转运阶段的典型速度,而微管蛋白以0.1-0.2 mm / d的速度前进, V组(SCa)的运输速度。进入视神经轴突的新合成的MAP 1A至少有13%沿着轴突均匀地掺入固定的轴突结构中。轴突中固定MAP 1A的半衰期时间(55-60 d)比IV组中移动的MAP 1A的半衰期长4.6倍,这表明轴突中MAP 1A的总数至少有44%是固定的。这些结果证明,在轴突中功能上彼此联系的细胞骨架蛋白可以以不同的转运速率递送至这些位点。当这些要素离开转运载体并整合到静止的细胞骨架中时,可以形成以不同速度运动的轴突成分之间的稳定关联。

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