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Haploinsufficient Bmp4 ocular phenotypes include anterior segment dysgenesis with elevated intraocular pressure

机译:单倍体不足的Bmp4眼表型包括前节发育不全和眼内压升高

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Background Glaucoma is a blinding disease usually associated with high intraocular pressure (IOP). In some families, abnormal anterior segment development contributes to glaucoma. The genes causing anterior segment dysgenesis and glaucoma in most of these families are not identified and the affected developmental processes are poorly understood. Bone morphogenetic proteins (BMPs) participate in various developmental processes. We tested the importance of Bmp4 gene dosage for ocular development and developmental glaucoma. Results Bmp4+/- mice have anterior segment abnormalities including malformed, absent or blocked trabecular meshwork and Schlemm's canal drainage structures. Mice with severe drainage structure abnormalities, over 80% or more of their angle's extent, have elevated IOP. The penetrance and severity of abnormalities is strongly influenced by genetic background, being most severe on the C57BL/6J background and absent on some other backgrounds. On the C57BL/6J background there is also persistence of the hyaloid vasculature, diminished numbers of inner retinal cells, and absence of the optic nerve. Conclusions We demonstrate that heterozygous deficiency of BMP4 results in anterior segment dysgenesis and elevated IOP. The abnormalities are similar to those in human patients with developmental glaucoma. Thus, BMP4 is a strong candidate to contribute to Axenfeld-Rieger anomaly and other developmental conditions associated with human glaucoma. BMP4 also participates in posterior segment development and wild-type levels are usually critical for optic nerve development on the C57BL/6J background. Bmp4+/- mice are useful for studying various components of ocular development, and may allow identification of strain specific modifiers affecting a variety of ocular phenotypes.
机译:背景青光眼是一种致盲性疾病,通常与高眼压(IOP)相关。在某些家庭中,前节发育异常会导致青光眼。在大多数这些家族中,导致前节发育不全和青光眼的基因尚未得到鉴定,并且对受影响的发育过程了解甚少。骨形态发生蛋白(BMP)参与各种发育过程。我们测试了Bmp4基因剂量对眼部发育和发育性青光眼的重要性。结果Bmp4 +/- 小鼠的前节畸形包括小梁网畸形,缺失或阻塞以及Schlemm的管引流结构。引流结构异常严重的小鼠(其角度范围的80%或更多)的IOP升高。异常的渗透率和严重程度受遗传背景的影响很大,在C57BL / 6J背景中最严重,而在其他一些背景中则不存在。在C57BL / 6J背景上,玻璃样脉管系统也存在持久性,内部视网膜细胞数量减少,并且没有视神经。结论我们证明BMP4的杂合缺陷会导致前节发育不全和IOP升高。异常与人类患有发展性青光眼的患者相似。因此,BMP4是促成Axenfeld-Rieger异常和其他与人类青光眼相关的发育状况的有力候选者。 BMP4也参与后节的发育,而野生型水平通常对于C57BL / 6J背景下的视神经发育至关重要。 Bmp4 +/- 小鼠可用于研究眼部发育的各个组成部分,并可识别影响多种眼表型的特定菌株修饰剂。

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