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硫氧还蛋白样6通过上调核因子κB活性保护视网膜细胞系免受光氧化损伤。

Thioredoxin-like 6 protects retinal cell line from photooxidative damage by upregulating NF-kappaB activity.

作者信息

Wang Xiao Wei, Tan Bao Zhen, Sun Miao, Ho Bow, Ding Jeak Ling

机构信息

Department of Biological Sciences, National University of Singapore, 117543 Singapore.

出版信息

Free Radic Biol Med. 2008 Aug 1;45(3):336-44. doi: 10.1016/j.freeradbiomed.2008.04.028. Epub 2008 Apr 26.

Abstract

Apoptosis is the common pathway to photoreceptor cell death in many eye diseases including age-related macular degeneration which affects more than 8 million individuals in the United States alone. RdCVF, a truncated mouse thioredoxin is specifically expressed by rod photoreceptor cells and prevents the apoptosis of cone cells. However the protective mechanism of RdCVF and the implications of its human homologue, thioredoxin-like 6 (TXNL6), on the apoptosis of retinal cells remain unknown. In this study, we examined the function of TXNL6 and investigated its mechanism of protection using a cone photoreceptor cell line, 661W. We found that the photooxidative stress-induced degradation of NF-kappaB proteins is rescued by overexpression of TXNL6, which enabled the NF-kappaB transactivation activity. Furthermore, the overexpression of TXNL6 rescued the photooxidative stress-induced apoptosis of 661W cells. Interestingly, this protective effect was significantly blocked by NF-kappaB specific inhibitors demonstrating that TXNL6 exerts its protective effect against apoptosis via NF-kappaB. Taken together, our study shows that the TXNL6 probably protects retinal cells from photooxidative damage-induced apoptosis via upregulation of NF-kappaB activity. The identification of TXNL6 and the demonstration of its protective mechanism offer new insights into treatment possibilities for photoreceptor cell degradation.

摘要

细胞凋亡是许多眼部疾病中光感受器细胞死亡的常见途径,包括年龄相关性黄斑变性,仅在美国就影响着超过800万人。RdCVF是一种截短的小鼠硫氧还蛋白,由视杆光感受器细胞特异性表达,可防止视锥细胞凋亡。然而,RdCVF的保护机制及其人类同源物硫氧还蛋白样6(TXNL6)对视网膜细胞凋亡的影响仍不清楚。在本研究中,我们使用视锥光感受器细胞系661W研究了TXNL6的功能,并探讨了其保护机制。我们发现,TXNL6的过表达挽救了光氧化应激诱导的NF-κB蛋白降解,从而恢复了NF-κB的反式激活活性。此外,TXNL6的过表达挽救了光氧化应激诱导的661W细胞凋亡。有趣的是,NF-κB特异性抑制剂显著阻断了这种保护作用,表明TXNL6通过NF-κB发挥其抗凋亡保护作用。综上所述,我们的研究表明,TXNL6可能通过上调NF-κB活性来保护视网膜细胞免受光氧化损伤诱导的凋亡。TXNL6的鉴定及其保护机制的证明为光感受器细胞退化的治疗可能性提供了新的见解。

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