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Characterization of full-length recombinant human Proteoglycan 4 as an ocular surface boundary lubricant

机译:全长重组人蛋白聚糖4作为眼表面边界润滑剂的表征

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Proteoglycan 4 (PRG4, or lubricin) is a lubricating mucin-like glycoprotein recently discovered at the ocular surface, where it functions as a boundary lubricant and appears to play a protective role. Recent technological advances have enabled abundant expression of full-length recombinant human PRG4 (rhPRG4). The objectives of this study were to 1) biochemically characterize the gross structure and glycosylations of full-length rhPRG4, and 2) assess the ocular surface boundary lubricating ability of rhPRG4 at both human cornea-eyelid and human cornea-polydimethylsiloxane (PDMS) biointerfaces. rhPRG4 expressed by a Chinese hamster ovary cell line was characterized and compared to native bovine PRG4 by SDS-PAGE western blotting, and protein identity was assessed by tandem mass spectrometry (MS/MS). Human corneas were articulated against PDMS or human eyelids, at effective sliding velocities of 0.3-30 mm/s under physiological loads of similar to 15 kPa, to assess and compare the ocular lubricating ability of rhPRG4 to PRG4. Samples were tested serially in PRG4, rhPRG4 (both 300 mu g/ml), then saline. Western blotting indicated that rhPRG4 had immunoreactivity at the appropriate apparent molecular weight, and possessed O-linked glycosylation consistent with that of PRG4. rhPRG4 protein identity was confirmed by MS/Ms. Both PRG4 and rhPRG4 significantly, and similarly, reduced friction compared to saline at both human cornea - PDMS and human cornea-eyelid biointerfaces. In conclusion, the rhPRG4 studied here demonstrated appropriate higher order structure, O-linked glycosylations, and ocular surface boundary lubricating. Purified rhPRG4 may have clinical utility as a topical treatment of dry eye disease or contact lens biomaterial coating to promote more comfortable wear. (C) 2014 Elsevier Ltd. All rights reserved.
机译:蛋白聚糖4(PRG4或lubricin)是最近在眼表发现的一种润滑性粘蛋白样糖蛋白,在其中作为边界润滑剂起作用,似乎起着保护作用。最近的技术进步使得全长重组人PRG4(rhPRG4)的大量表达成为可能。这项研究的目的是1)生化表征全长rhPRG4的总体结构和糖基化,以及2)评估rhPRG4在人角膜-眼睑和人角膜-聚二甲基硅氧烷(PDMS)生物界面上的眼表边界润滑能力。对中国仓鼠卵巢细胞系表达的rhPRG4进行了表征,并通过SDS-PAGE蛋白质印迹与天然牛PRG4进行了比较,并通过串联质谱(MS / MS)评估了蛋白质的同一性。在类似于15 kPa的生理负荷下,以0.3-30 mm / s的有效滑动速度将人角膜针对PDMS或人眼睑进行关节运动,以评估和比较rhPRG4与PRG4的眼润滑能力。在PRG4,rhPRG4(均为300μg/ ml)中,然后在盐水中依次测试样品。 Western印迹表明rhPRG4在适当的表观分子量下具有免疫反应性,并具有与PRG4一致的O-连接糖基化。 MS / MS证实了rhPRG4蛋白的身份。与盐水相比,PRG4和rhPRG4在人角膜-PDMS和人角膜-眼睑生物界面上均显着降低了摩擦。总之,本文研究的rhPRG4表现出适当的高阶结构,O-连接的糖基化和眼表边界润滑。纯化的rhPRG4可以作为局部治疗干眼症或隐形眼镜生物材料涂层的临床工具,以促进更舒适的佩戴。 (C)2014 Elsevier Ltd.保留所有权利。

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