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猴慢性青光眼模型中重链神经丝亚基去磷酸化增加。

Increase in dephosphorylation of the heavy neurofilament subunit in the monkey chronic glaucoma model.

作者信息

Kashiwagi Kenji, Ou Bo, Nakamura Shinichiro, Tanaka Yuko, Suzuki Michihiro, Tsukahara Shigeo

机构信息

Department of Ophthalmology, Yamanashi Medical University, 1110 Shimokato, Tamaho, Yamanashi 409-3898, Japan.

出版信息

Invest Ophthalmol Vis Sci. 2003 Jan;44(1):154-9. doi: 10.1167/iovs.02-0398.

Abstract

PURPOSE

To investigate the phosphorylation of the heavy neurofilament subunit (NF-H), which could be deeply involved in axonal transport of retinal ganglion cells (RGCs), in an experimental glaucoma model of chronic elevation of intraocular pressure (IOP) in monkeys.

METHODS

One eye in adult monkeys was randomly selected for laser treatment, and IOP was maintained between 30 and 40 mm Hg throughout the experiment. The eyeballs with the optic nerve and optic chiasm were enucleated as one tissue and were subject to immunocytochemical observation, using two NF-H-specific antibodies, NF-200 and SMI31. NF-200 reacts with both phosphorylated and dephosphorylated NF-H, whereas SMI reacts only with phosphorylated NF-H. Ratios of SMI31-positive to NF-200-positive areas were calculated for quantitative evaluation of phosphorylation status. Specimens from the retina, lamina cribrosa (LC), post-LC, and optic chiasm were evaluated separately. Phosphorylation of NF-H at the retina and optic nerve head was compared between specimens from temporal retina and nasal retina, or between temporal and nasal regions of the optic disc. The status of phosphorylation was confirmed by Western blot analysis.

RESULTS

An enlargement of the disc cup was observed on the temporal side, and the superior and inferior poles were preferentially involved in the neuronal damage in laser-treated eyes. Most NF-Hs in the control eyes were phosphorylated in all investigated regions, whereas those in the glaucomatous eyes were significantly dephosphorylated, and NF-Hs in the temporal region were significantly dephosphorylated compared with those in the nasal region. At the optic chiasm, NF-Hs in axons traveling from laser-treated eyes were highly dephosphorylated, and the extent of NF-H dephosphorylation corresponded to the degree of glaucoma-induced axonal damage. Western blot analysis showed the change in the phosphorylation of NF-Hs.

CONCLUSIONS

NF-Hs in RGC axons are dephosphorylated by elevated IOP, which may be deeply involved in glaucoma-induced damage to axonal transport.

摘要

目的

在猴眼慢性眼压升高的实验性青光眼模型中,研究可能与视网膜神经节细胞(RGCs)轴突运输密切相关的重神经丝亚基(NF-H)的磷酸化情况。

方法

随机选择成年猴的一只眼睛进行激光治疗,在整个实验过程中使眼压维持在30至40 mmHg之间。将带有视神经和视交叉的眼球作为一个组织摘除,并使用两种NF-H特异性抗体NF-200和SMI31进行免疫细胞化学观察。NF-200可与磷酸化和去磷酸化的NF-H反应,而SMI仅与磷酸化的NF-H反应。计算SMI31阳性区域与NF-200阳性区域的比例,以定量评估磷酸化状态。分别对来自视网膜、筛板(LC)、筛板后和视交叉的标本进行评估。比较颞侧视网膜和鼻侧视网膜标本,或视盘颞侧和鼻侧区域标本中视网膜和视神经头处NF-H的磷酸化情况。通过蛋白质印迹分析确认磷酸化状态。

结果

在激光治疗的眼中,颞侧视盘杯扩大,上、下极优先受到神经元损伤。在所有研究区域中,对照眼中的大多数NF-H被磷酸化,而青光眼眼中的NF-H明显去磷酸化,与鼻侧区域相比,颞侧区域的NF-H明显去磷酸化。在视交叉处,来自激光治疗眼的轴突中的NF-H高度去磷酸化,NF-H去磷酸化的程度与青光眼诱导的轴突损伤程度相对应。蛋白质印迹分析显示了NF-H磷酸化的变化。

结论

RGC轴突中的NF-H因眼压升高而去磷酸化,这可能与青光眼诱导的轴突运输损伤密切相关。

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