J Clin Invest. 2014 Jan;124(1):385-97. doi: 10.1172/JCI71488. Epub 2013 Dec 9.
Corneal integrity and transparency are indispensable for good vision. Cornea homeostasis is entirely dependent upon corneal stem cells, which are required for complex wound-healing processes that restore corneal integrity following epithelial damage. Here, we found that leucine-rich repeats and immunoglobulin-like domains 1 (LRIG1) is highly expressed in the human holoclone-type corneal epithelial stem cell population and sporadically expressed in the basal cells of ocular-surface epithelium. In murine models, LRIG1 regulated corneal epithelial cell fate during wound repair. Deletion of Lrig1 resulted in impaired stem cell recruitment following injury and promoted a cell-fate switch from transparent epithelium to keratinized skin-like epidermis, which led to corneal blindness. In addition, we determined that LRIG1 is a negative regulator of the STAT3-dependent inflammatory pathway. Inhibition of STAT3 in corneas of Lrig1-/- mice rescued pathological phenotypes and prevented corneal opacity. Additionally, transgenic mice that expressed a constitutively active form of STAT3 in the corneal epithelium had abnormal features, including corneal plaques and neovascularization similar to that found in Lrig1-/- mice. Bone marrow chimera experiments indicated that LRIG1 also coordinates the function of bone marrow-derived inflammatory cells. Together, our data indicate that LRIG1 orchestrates corneal-tissue transparency and cell fate during repair, and identify LRIG1 as a key regulator of tissue homeostasis.
角膜的完整性和透明度是良好视力所必需的。角膜稳态完全依赖于角膜干细胞,这些干细胞对于复杂的伤口愈合过程至关重要,可在眼表面上皮损伤后恢复角膜的完整性。在这里,我们发现富含亮氨酸的重复序列和免疫球蛋白样结构域 1(LRIG1)在人全克隆型角膜上皮干细胞群体中高度表达,并且在眼表面上皮的基底细胞中零星表达。在小鼠模型中,LRIG1 在角膜上皮细胞命运调控中起作用。Lrig1 缺失导致损伤后干细胞募集受损,并促进从透明上皮向角化皮肤样表皮的细胞命运转变,从而导致角膜盲。此外,我们确定 LRIG1 是 STAT3 依赖性炎症途径的负调节剂。在 Lrig1-/-小鼠的角膜中抑制 STAT3 可挽救病理性表型并防止角膜混浊。此外,在角膜上皮中表达组成型激活形式的 STAT3 的转基因小鼠具有异常特征,包括角膜斑块和新生血管形成,类似于 Lrig1-/-小鼠。骨髓嵌合体实验表明,LRIG1 还协调骨髓来源的炎症细胞的功能。总之,我们的数据表明,LRIG1 在修复过程中协调角膜组织透明度和细胞命运,并将 LRIG1 鉴定为组织稳态的关键调节剂。