Nandrot Emeline F, Anand Monika, Almeida Dena, Atabai Kamran, Sheppard Dean, Finnemann Silvia C
Dyson Vision Research Institute, Department of Ophthalmology, Weill Medical College of Cornell University, New York, NY 10021, USA.
Proc Natl Acad Sci U S A. 2007 Jul 17;104(29):12005-10. doi: 10.1073/pnas.0704756104. Epub 2007 Jul 9.
The integrin receptor alphavbeta5 controls two independent forms of interactions of the retinal pigment epithelium (RPE) with adjacent photoreceptor outer segments that are essential for vision. Alphavbeta5 localizes specifically to apical microvilli of the RPE and contributes to retinal adhesion that maintains RPE contacts with intact outer segments at all times. Additionally, alphavbeta5 synchronizes diurnal bursts of RPE phagocytosis that clear photoreceptor outer segment fragments (POS) shed in a circadian rhythm. Dependence of retinal phagocytosis and adhesion on alphavbeta5 receptors suggests that the extracellular matrix ensheathing RPE microvilli contains ligands for this integrin. Here we studied mice lacking expression of functional MFG-E8 to test the contribution of this integrin ligand to alphavbeta5 functions in the retina. Lack of MFG-E8 only minimally reduced retinal adhesion. In contrast, lack of MFG-E8, like lack of alphavbeta5 receptor, eliminated alphavbeta5 downstream signaling involving the engulfment receptor MerTK and peak POS phagocytosis, both of which follow light onset in wild-type retina. MFG-E8-deficient RPE in primary culture retained normal epithelial morphology and levels of apical alphavbeta5 receptors, but showed impaired binding and engulfment of isolated POS. Soluble or POS-bound recombinant MFG-E8 was sufficient to fully restore phagocytosis by MFG-E8-deficient RPE. Furthermore, MFG-E8 supplementation strongly increased POS binding by wild-type and MerTK-deficient RPE, but did not affect POS binding by RPE lacking alphavbeta5. Thus, MFG-E8 stimulates rhythmic POS phagocytosis by ligating apical alphavbeta5 receptors of the RPE. These results identify MFG-E8 as the first extracellular ligand in the retina that is essential for diurnal POS phagocytosis.
整合素受体αvβ5控制视网膜色素上皮(RPE)与相邻光感受器外段的两种独立相互作用形式,这两种相互作用形式对视觉至关重要。αvβ5特异性定位于RPE的顶端微绒毛,并有助于视网膜黏附,从而使RPE始终与完整的外段保持接触。此外,αvβ5使RPE吞噬作用的昼夜节律性爆发同步,清除以昼夜节律脱落的光感受器外段碎片(POS)。视网膜吞噬作用和黏附对αvβ5受体的依赖性表明,包裹RPE微绒毛的细胞外基质含有该整合素的配体。在此,我们研究了缺乏功能性MFG-E8表达的小鼠,以测试这种整合素配体对视网膜中αvβ5功能的贡献。缺乏MFG-E8只会轻微降低视网膜黏附。相比之下,缺乏MFG-E8,就像缺乏αvβ5受体一样,消除了αvβ5下游涉及吞噬受体MerTK的信号传导以及POS吞噬高峰,这两者在野生型视网膜中都跟随光照开始。原代培养中缺乏MFG-E8的RPE保留了正常的上皮形态和顶端αvβ5受体水平,但对分离的POS的结合和吞噬受损。可溶性或与POS结合的重组MFG-E8足以完全恢复缺乏MFG-E8的RPE的吞噬作用。此外,补充MFG-E8可强烈增加野生型和缺乏MerTK的RPE对POS的结合,但不影响缺乏αvβ5的RPE对POS的结合。因此,MFG-E8通过连接RPE的顶端αvβ5受体来刺激有节律的POS吞噬作用。这些结果确定MFG-E8是视网膜中昼夜节律性POS吞噬作用所必需的首个细胞外配体。