Sundin Olof H, Dharmaraj Sharola, Bhutto Imran A, Hasegawa Takuya, McLeod D Scott, Merges Carol A, Silval Eduardo D, Maumenee Irene H, Lutty Gerard A
Wilmer Eye Institute, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21287-92889, USA.
Ophthalmic Genet. 2008 Mar;29(1):1-9. doi: 10.1080/13816810701651241.
Nanophthalmos is a genetic disorder characterized by very small, hyperopic eyes that are without gross structural defects. Recessive nanophthalmos is caused by severe mutations in the MFRP gene, which encodes a Frizzled-related transmembrane protein that is selectively expressed in the retinal pigment epithelium (RPE) and ciliary body.
For two MFRP -/- adults, we have obtained records of refraction that begin in early childhood. At the age of 6 months, one patient's eyes already had a refractive error of +12.25 D, and over the next 20 years this slowly increased to +17.50 D. Adults homozygous for null mutations in MFRP have eyes with axial lengths shorter than those of normal newborns. Furthermore, the unusually high curvature of their corneas is consistent with eyes that had been smaller than normal during late fetal development. MFRP protein was first detected at 14 weeks of gestation, when it was restricted to the posterior pole RPE. By 20 weeks gestation, MFRP expression had spread laterally, and was found throughout the RPE. MFRP protein was detected in both posterior and lateral RPE of the adult eye.
Embryonic function of the MFRP gene appears necessary for the eye to reach its full size at birth. Its onset of expression in the RPE during mid-gestation suggests that MFRP does not participate in early formation of the optic cup, and is consistent with a role in later growth and development of the eye. Patients without MFRP gene function exhibit no correction of refractive error during childhood, which suggests that this gene is essential for emmetropization, a complex process by which vision regulates axial growth of the eye.
小眼球症是一种遗传性疾病,其特征是眼球非常小且为远视眼,无明显结构缺陷。隐性小眼球症由MFRP基因的严重突变引起,该基因编码一种卷曲相关跨膜蛋白,在视网膜色素上皮(RPE)和睫状体中选择性表达。
对于两名MFRP基因敲除的成年人,我们获得了从幼儿期开始的屈光记录。6个月大时,一名患者的眼睛已经有+12.25 D的屈光不正,在接下来的20年里,这一数值缓慢增加到+17.50 D。MFRP基因纯合缺失突变的成年人眼睛的眼轴长度比正常新生儿短。此外,他们角膜异常高的曲率与胎儿发育后期眼睛小于正常的情况一致。MFRP蛋白在妊娠14周时首次被检测到,当时它局限于后极RPE。到妊娠20周时,MFRP的表达已向侧面扩散,并在整个RPE中被发现。在成年眼睛的后极和侧面RPE中均检测到MFRP蛋白。
MFRP基因的胚胎功能似乎是眼睛在出生时达到其完整大小所必需的。它在妊娠中期在RPE中的表达开始表明,MFRP不参与视杯的早期形成,这与它在眼睛后期生长和发育中的作用一致。没有MFRP基因功能的患者在儿童期屈光不正没有得到矫正,这表明该基因对于正视化至关重要,正视化是一个视觉调节眼睛轴向生长的复杂过程。