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Involvement of the Extrinsic and Intrinsic Pathways in Ultraviolet B-Induced Apoptosis of Corneal Epithelial Cells

机译:外在和内在途径参与紫外线B诱导的角膜上皮细胞凋亡

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摘要

The goal of this study was to elucidate the pathway by which UVB initiates efflux of K+ and subsequently apoptosis in human corneal limbal epithelial (HCLE) cells. The initial focus of the study was on the extrinsic pathway involving Fas. HCLE cells transfected with Fas siRNA were exposed to 80–150 mJ/cm2 UVB and incubated in culture medium with 5.5 mM K+. Knock down of Fas resulted in limited reduction in UVB-induced caspase-8 and -3 activity. Patch-clamp recordings showed no difference in UVB-induced normalized K+ currents between Fas transfected and control cells. Knockdown of caspase-8 had no effect on the activation of caspase-3 following UVB exposure, while a caspase-8 inhibitor completely eliminated UVB activation of caspase-3. This suggests that caspase-8 is a robust enzyme, able to activate caspase-3 via residual caspase-8 present after knockdown, and that caspase-8 is directly involved in the UVB activation of caspase-3. Inhibition of caspase-9 significantly decreased the activation of caspases-8 and -3 in response to UVB. Knockdown of Apaf-1, required for activation of caspase-9, resulted in a significant reduction in UVB-induced activation of caspases-9, -8, and -3. Knockdown of Apaf-1 also inhibited intrinsic and UVB-induced levels of apoptosis, as determined by DNA fragmentation measured by TUNEL assay. In UVB exposed cultures treated with caspase-3 inhibitor, the percentage of apoptotic cells was reduced to control levels, confirming the necessity of caspase-3 activation in DNA fragmentation. The lack of effect of Fas knockdown on K+ channel activation, as well as the limited effect on activation of caspases-8 and -3, strongly suggest that Fas and the extrinsic pathway is not of primary importance in the initiation of apoptosis in response to UVB in HCLE cells. Inhibition of caspase-8 and -3 activation following inhibition of caspase-9, as well as reduction in activation of caspases-9, -8, and -3 and DNA fragmentation in response to Apaf-1 knockdown support the conclusion that the intrinsic pathway is more important in UVB-induced apoptosis in HCLE cells.
机译:这项研究的目的是阐明UVB引发人角膜缘上皮(HCLE)细胞K + 外流并随后凋亡的途径。该研究的最初重点是涉及Fas的外部途径。用Fas siRNA转染的HCLE细胞暴露于80–150 mJ / cm 2 UVB中,并在含有5.5 mM K + 的培养基中孵育。抑制Fas导致UVB诱导的caspase-8和-3活性的降低有限。膜片钳记录显示,在Fas转染的细胞和对照细胞之间,UVB诱导的归一化K + 电流没有差异。敲低caspase-8对UVB暴露后对caspase-3的激活没有影响,而caspase-8抑制剂则完全消除了对caspase-3的UVB激活。这表明caspase-8是一种强大的酶,能够通过敲低后存在的残留caspase-8激活caspase-3,并且caspase-8直接参与caspase-3的UVB活化。 caspase-9的抑制显着降低了响应UVB的caspases-8和-3的激活。敲除激活caspase-9所需的Apaf-1,导致UVB诱导的caspases-9,-8和-3的激活显着减少。击倒Apaf-1还可以抑制内在的和UVB诱导的凋亡水平,这是通过TUNEL分析测定的DNA片段确定的。在用caspase-3抑制剂处理的UVB暴露培养物中,凋亡细胞的百分比降低至对照水平,这证实了caspase-3活化在DNA片段化中的必要性。 Fas敲低对K + 通道激活的作用缺乏,以及对caspases-8和-3激活的作用有限,强烈表明Fas和外源性途径在在HCLE细胞中响应UVB引发凋亡。抑制caspase-9后抑制caspase-8和-3激活,以及减少caspase-9,-8和-3的激活以及响应Apaf-1敲低的DNA片段化,支持以下结论:内在途径在UVB诱导的HCLE细胞凋亡中更重要。

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