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基因靶向的核心蛋白聚糖-纤调蛋白双敲除小鼠的眼部和巩膜改变

Ocular and scleral alterations in gene-targeted lumican-fibromodulin double-null mice.

作者信息

Chakravarti Shukti, Paul Jennifer, Roberts Luke, Chervoneva Inna, Oldberg Ake, Birk David E

机构信息

Department of Medicine, Johns Hopkins University, Baltimore, Maryland 21205, USA.

出版信息

Invest Ophthalmol Vis Sci. 2003 Jun;44(6):2422-32. doi: 10.1167/iovs.02-0783.

Abstract

PURPOSE

To elucidate the role of leucine-rich proteoglycans lumican and fibromodulin in the sclera.

METHODS

Lumican- and fibromodulin-null heterozygous mice were intercrossed to obtain wild-type (Lum(+/+)Fmod(+/+)), lumican-null (Lum(-/-)Fmod(+/+)), fibromodulin-null (Lum(+/+)Fmod(-/-)), and double-null (Lum(-/-)Fmod(-/-)) littermates. Axial length was measured on enucleated whole eyes, and ocular structural changes were examined by histology. The morphology of collagen fibrils in the sclera was examined by transmission electron microscopy (TEM).

RESULTS

Compared with the ocular axial length in wild type mice, the axial length was increased by 10% in Lum(-/-)Fmod(-/-) (P = 0.02) mice. Retinal detachment was frequent in the double-null and rare in the lumican-null animals. Compared with the wild-type sclera, the sclera in all null mutants was significantly thinner with fewer lamellae (P < 0.05). The double-null sclera contained abnormally large-diameter (120-160 nm) and small-diameter (30-60 nm) collagen fibrils, whereas the fibromodulin-null sclera was enriched for the small-diameter fibrils. The collagen fibril diameter distribution in the lumican-null sclera was similar to that of the wild-type.

CONCLUSIONS

An increase in small-diameter fibrils in the fibromodulin-null sclera suggests a key role for fibromodulin in the maturation and assembly of scleral collagen fibrils. That fibril diameter distribution in the lumican-null sclera was comparable to that in the wild type, but severely disrupted in the double null, suggests a role for lumican that is crucial in the absence of fibromodulin. The eyes of Lum(-/-)Fmod(-/-) mice show certain features of high myopia: increased axial length, thin sclera, and retinal detachment. Mutations or altered expression of these proteoglycans may contribute to myopia in humans.

摘要

目的

阐明富含亮氨酸蛋白聚糖核心蛋白聚糖和纤调蛋白在巩膜中的作用。

方法

将核心蛋白聚糖和纤调蛋白基因敲除的杂合小鼠进行杂交,以获得野生型(Lum(+/+)Fmod(+/+))、核心蛋白聚糖基因敲除型(Lum(-/-)Fmod(+/+))、纤调蛋白基因敲除型(Lum(+/+)Fmod(-/-))和双基因敲除型(Lum(-/-)Fmod(-/-))的同窝小鼠。对摘除的全眼球测量眼轴长度,并通过组织学检查眼部结构变化。通过透射电子显微镜(TEM)检查巩膜中胶原纤维的形态。

结果

与野生型小鼠的眼轴长度相比,Lum(-/-)Fmod(-/-)小鼠的眼轴长度增加了10%(P = 0.02)。双基因敲除型小鼠频繁发生视网膜脱离,而核心蛋白聚糖基因敲除型动物中则很少见。与野生型巩膜相比,所有基因敲除突变体的巩膜明显更薄,板层更少(P < 0.05)。双基因敲除型巩膜含有异常大直径(120 - 160 nm)和小直径(30 - 60 nm)的胶原纤维,而纤调蛋白基因敲除型巩膜富含小直径纤维。核心蛋白聚糖基因敲除型巩膜中的胶原纤维直径分布与野生型相似。

结论

纤调蛋白基因敲除型巩膜中小直径纤维增加表明纤调蛋白在巩膜胶原纤维的成熟和组装中起关键作用。核心蛋白聚糖基因敲除型巩膜中的纤维直径分布与野生型相当,但在双基因敲除型中严重紊乱,这表明在缺乏纤调蛋白的情况下,核心蛋白聚糖起关键作用。Lum(-/-)Fmod(-/-)小鼠的眼睛表现出高度近视的某些特征:眼轴长度增加、巩膜变薄和视网膜脱离。这些蛋白聚糖的突变或表达改变可能导致人类近视。

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