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Expression and Distribution of Mesencephalic Astrocyte-Derived Neurotrophic Factor in the Retina and Optic Nerve

机译:中脑星形胶质细胞源性神经营养因子在视网膜和视神经中的表达和分布

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摘要

Mesencephalic astrocyte-derived neurotrophic factor (MANF), otherwise named Arginine-Rich, Mutated in Early-stage Tumors (ARMET), is a secretory endoplasmic reticulum stress (ERS) protein that is widely expressed in mammalian tissues. To date, little is known about the distribution and expression of MANF in the retina and optic nerve (ON). Therefore, we studied the expression and distribution of MANF in the ON and retina by real-time PCR, immunofluorescence staining and western blotting. Results from rat and mouse were highly consistent in the retina. MANF was detected in both tissues in rat, wherein it was principally localized to the ganglion cell layer (GCL), followed by the inner nuclear layer (INL). The MANF protein levels in the rat retina were 3.33-fold higher than in the rat ON. Additionally, MANF was robustly expressed by retinal ganglion cells (RGCs) in the human retina. In human ON, MANF was partially co-localized with glial fibrillary acidic protein (GFAP), suggesting that it was not restricted to astrocytes. In vitro studies confirmed that MANF could be robustly expressed in RGCs and was found principally within the cytoplasm. Hypoxia can stimulate up-regulation by of MANF expression over time, suggesting that MANF may play a vital role in the functional regulation of RGCs both in health and disease. We believe that the present study improves our understanding of the distribution and expression of MANF in the retina and ON and could help in further analysis of its interact and correlate with the relevant ophthalmic diseases.
机译:中脑星形胶质细胞衍生的神经营养因子(MANF),也称为精氨酸丰富,在早期肿瘤中突变(ARMET),是一种分泌型内质网应激(ERS)蛋白,在哺乳动物组织中广泛表达。迄今为止,关于MANF在视网膜和视神经(ON)中的分布和表达的了解还很少。因此,我们通过实时PCR,免疫荧光染色和蛋白质印迹研究了MANF在ON和视网膜中的表达和分布。大鼠和小鼠的结果在视网膜中高度一致。在大鼠的两个组织中均检测到MANF,其中MANF主要位于神经节细胞层(GCL),然后位于内核层(INL)。大鼠视网膜中的MANF蛋白水平比大鼠ON中高3.33倍。另外,MANF由人视网膜中的视网膜神经节细胞(RGC)强烈表达。在人类ON中,MANF与神经胶质原纤维酸性蛋白(GFAP)部分共定位,表明它不限于星形胶质细胞。体外研究证实MANF可以在RGC中稳定表达,并且主要在细胞质内发现。缺氧会随着时间的推移刺激MANF表达的上调,这表明MANF在健康和疾病中RGC的功能调节中可能起着至关重要的作用。我们认为,本研究提高了我们对MANF在视网膜和ON上的分布和表达的理解,并有助于进一步分析其与相关眼科疾病的相互作用和相关性。

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