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小梁网钙化过程的证据。

Evidence for a calcification process in the trabecular meshwork.

作者信息

Borrás Teresa, Comes Núria

机构信息

Department of Ophthalmology, University of North Carolina School of Medicine, Chapel Hill, NC 27599-7041, USA.

出版信息

Exp Eye Res. 2009 Apr;88(4):738-46. doi: 10.1016/j.exer.2008.11.027. Epub 2008 Dec 6.

Abstract

The human trabecular meshwork (TM) expresses many genes that have been associated with physiological (bone, cartilage, teeth) and pathological (vascular systems, kidney) calcification. In particular, the TM highly expresses the inhibitor of calcification Matrix Gla (MGP) gene, which encodes a vitamin K-dependent protein that requires post-translational activation to inhibit the formation of calcium precipitates. TM cells have high activity of the activating gamma-carboxylase enzyme and produce active MGP. Silencing MGP increases the activity of alkaline phosphatase (ALP), an enzyme of the matrix vesicles and marker of calcification. Overexpressing MGP reduces the ALP activity induced by bone morphogenetic 2 (BMP2), a potent inducer of calcification. In this review we gathered evidence for the existence of a mineralization process in the TM. We selected twenty regulatory calcification genes, reviewed their functions in their original tissues and looked at their relative abundance in the TM by heat maps derived from existing microarrays. Although results are not yet fully conclusive and more experiments are needed, examining TM expression in the light of the calcification literature brings up many similarities. One such parallel is the role of mechanical forces in bone induction and the high levels of mineralization inhibitors found in the constantly mechanically stressed TM. During the next few years, examination of other calcification-related regulatory genes and pathways, as well as morphological examination of knockout animals, would help to elucidate the relevance of a calcification process to TM's overall function.

摘要

人小梁网(TM)表达许多与生理性(骨骼、软骨、牙齿)和病理性(血管系统、肾脏)钙化相关的基因。特别是,TM高表达钙化抑制因子基质Gla(MGP)基因,该基因编码一种维生素K依赖性蛋白,需要翻译后激活才能抑制钙沉淀的形成。TM细胞具有高活性的γ-羧化酶并产生活性MGP。沉默MGP会增加碱性磷酸酶(ALP)的活性,ALP是基质小泡的一种酶,也是钙化的标志物。过表达MGP可降低由骨形态发生蛋白2(BMP2)诱导的ALP活性,BMP2是一种强效的钙化诱导剂。在本综述中,我们收集了TM中存在矿化过程的证据。我们选择了20个调节钙化的基因,回顾了它们在原始组织中的功能,并通过现有微阵列生成的热图查看它们在TM中的相对丰度。尽管结果尚未完全确定,还需要更多实验,但根据钙化文献研究TM的表达会发现许多相似之处。其中一个相似之处是机械力在骨诱导中的作用以及在持续受到机械应力的TM中发现的高水平矿化抑制剂。在接下来的几年里,对其他与钙化相关的调节基因和途径进行研究,以及对基因敲除动物进行形态学检查,将有助于阐明钙化过程与TM整体功能的相关性。

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