Coulson-Thomas Vivien Jane, Chang Shao-Hsuan, Yeh Lung-Kun, Coulson-Thomas Yvette May, Yamaguchi Yu, Esko Jeffrey, Liu Chia-Yang, Kao Winston
Department of Ophthalmology University of Cincinnati, Cincinnati, Ohio, United States.
Department of Ophthalmology, Chang-Gung Memorial Hospital, Chang-Gung University College of Medicine, Linko, Taiwan.
Invest Ophthalmol Vis Sci. 2015 May;56(5):3004-14. doi: 10.1167/iovs.14-15341.
Heparan sulfate (HS) is a highly modified glycosaminoglycan (GAG) bound to a core protein to form heparan sulfate proteoglycans (HSPGs) that are vital in many cellular processes ranging from development to adult physiology, as well as in disease, through interactions with various protein ligands. This study aimed to elucidate the role of HS in corneal epithelial homeostasis and wound healing.
An inducible quadruple transgenic mouse model was generated to excise Ext1 and Ndst1, which encode the critical HS chain elongation enzyme and N-deacetylase/N-sulfotransferase, respectively, in keratin 14-positive cells upon doxycycline induction.
EXT(Δ/ΔCEpi) mice (deletion of Ext1 in corneal epithelium) induced at P20 presented progressive thinning of the corneal epithelium with a significant loss in the number of epithelial layers by P55. EXT(Δ/ΔCEpi) mice presented tight junction disruption, loss of cell-basement membrane adhesion complexes, and impaired wound healing. Interestingly, EXT(Δ/ΔCEpi) and NDST(Δ/ΔCEpi) mice presented an increase in cell proliferation, which was assayed by both Ki67 staining and 5-ethynyl-2'-deoxyuridine (EdU) incorporation. Moreover, EXT(Δ/ΔCEpi) mice presented compromised epithelial stratification 7 days after a debridement wound. The conditional knockout of HS from keratocytes using the keratocan promoter led to no corneal abnormalities or any disruption in wound healing.
Corneal epithelial cells require HS for maintaining corneal homeostasis, and the loss of epithelial HS leads to both impaired wound healing and impaired corneal stratification.
硫酸乙酰肝素(HS)是一种高度修饰的糖胺聚糖(GAG),与核心蛋白结合形成硫酸乙酰肝素蛋白聚糖(HSPG),其通过与各种蛋白质配体相互作用,在从发育到成体生理等许多细胞过程以及疾病中都至关重要。本研究旨在阐明HS在角膜上皮稳态和伤口愈合中的作用。
构建了一种可诱导的四重转基因小鼠模型,在强力霉素诱导下,切除角蛋白14阳性细胞中分别编码关键的HS链延长酶和N-脱乙酰基酶/N-硫酸转移酶的Ext1和Ndst1。
在出生后第20天诱导的EXT(Δ/ΔCEpi)小鼠(角膜上皮中Ext1缺失),到出生后第55天角膜上皮逐渐变薄,上皮层数显著减少。EXT(Δ/ΔCEpi)小鼠出现紧密连接破坏、细胞-基底膜黏附复合体丧失以及伤口愈合受损。有趣的是,通过Ki67染色和5-乙炔基-2'-脱氧尿苷(EdU)掺入检测发现,EXT(Δ/ΔCEpi)和NDST(Δ/ΔCEpi)小鼠的细胞增殖增加。此外,EXT(Δ/ΔCEpi)小鼠在清创伤口7天后上皮分层受损。使用角蛋白聚糖启动子条件性敲除角膜细胞中的HS,未导致角膜异常或伤口愈合出现任何破坏。
角膜上皮细胞维持角膜稳态需要HS,上皮HS的缺失会导致伤口愈合受损和角膜分层受损。