首页> 外文OA文献 >Calcium and calmodulin-enhanced in vitro phosphorylation of hen brain cold-stable microtubules and spinal cord neurofilament triplet proteins after a single oral dose of tri-o-cresyl phosphate.
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Calcium and calmodulin-enhanced in vitro phosphorylation of hen brain cold-stable microtubules and spinal cord neurofilament triplet proteins after a single oral dose of tri-o-cresyl phosphate.

机译:单次口服三邻甲苯基磷酸酯后,钙和钙调蛋白可增强母鸡脑冷稳定微管和脊髓神经丝三联体蛋白的体外磷酸化。

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摘要

The effect of a single 750-mg/kg oral dose of tri-o-cresyl phosphate (TOCP) on the endogenous phosphorylation of brain microtubule preparations and spinal cord neurofilaments was assessed in hens after the development of delayed neurotoxicity. Protein phosphorylation with [gamma-32P]ATP was analyzed by one-dimensional and two-dimensional gel electrophoresis, autoradiography, and microdensitometry. TOCP treatment enhanced the Ca2+- and calmodulin-dependent phosphorylation of tubulin in crude chicken brain cytosol (160% for alpha-tubulin and 140% for beta-tubulin) and cold-stable microtubules (165% and 155% for alpha- and beta-tubulin, respectively). Microtubule-associated protein 2 (MAP-2) phosphorylation was also increased in brain fractions studied--i.e., brain cytosol (145%), cold-stable microtubules (133%), and cold-labile microtubules (328%). There was significant increase in phosphorylation of a 70-kDa protein in the brain cytosol and in the cold-stable microtubule fractions. TOCP also stimulated the phosphorylation of spinal cord proteins of 70 kDa (119%) and 160 kDa (129%) in a Mg2+-dependent manner. Addition of Ca2+ and calmodulin further enhanced the phosphorylation of these 70-kDa (563%) and 160-kDa (221%) proteins as well as of 52-, 59-, and 210-kDa proteins by as much as 126%, 160%, and 196%, respectively. Two-dimensional electrophoresis was carried out to identify these proteins. They were confirmed as alpha- and beta-tubulin (52 and 59 kDa) in brain and spinal cord preparations and the neurofilament triplet proteins (70, 160, and 210 kDa) in the spinal cord preparation. The 70-kDa protein in brain was not neurofilament in origin. Peptide mapping using Staphylococcus aureus V8 protease showed the brain and spinal cord cytoskeletal proteins have identical phosphopeptide patterns in control and TOCP-treated hens, indicating that it was unlikely that the phosphorylation sites were altered by TOCP treatment.
机译:在发育迟缓的神经毒性发生后,在母鸡中评估了单次口服750 mg / kg磷酸三邻甲酚酯(TOCP)对脑微管制剂和脊髓神经丝的内源性磷酸化的影响。通过一维和二维凝胶电泳,放射自显影和微光密度法分析了用[γ-32P] ATP进行的蛋白质磷酸化。 TOCP处理增强了粗鸡脑细胞溶胶(α-微管蛋白为160%,β-微管蛋白为140%)和冷稳定微管(α-和β-为165%和155%)中微管蛋白的Ca2 +和钙调蛋白依赖性磷酸化。微管蛋白)。在研究的大脑部分中,微管相关蛋白2(MAP-2)的磷酸化也增加了,即脑细胞溶质(145%),冷稳定微管(133%)和冷不稳定微管(328%)。脑细胞溶胶和冷稳定的微管组分中的70 kDa蛋白的磷酸化显着增加。 TOCP还以Mg2 +依赖的方式刺激了70 kDa(119%)和160 kDa(129%)的脊髓蛋白磷酸化。 Ca2 +和钙调蛋白的加入进一步增强了这些70-kDa(563%)和160-kDa(221%)蛋白质以及52-,59-和210-kDa蛋白质的磷酸化程度高达126%,160 %和196%。进行二维电泳以鉴定这些蛋白质。它们在脑和脊髓制剂中被确认为α-和β-微管蛋白(52和59 kDa),在脊髓制剂中被确认为神经丝三联体蛋白(70、160和210 kDa)。脑中的70 kDa蛋白不是神经丝来源。使用金黄色葡萄球菌V8蛋白酶进行的肽图分析显示,在对照组和经TOCP处理的母鸡中,脑和脊髓的细胞骨架蛋白具有相同的磷酸肽模式,这表明通过TOCP处理不太可能改变磷酸化位点。

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