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乙酰左旋肉碱抑制甲状腺激素诱导的和自发的蛙类蝌蚪尾部缩短。

Acetyl-L-carnitine suppresses thyroid hormone-induced and spontaneous anuran tadpole tail shortening.

机构信息

Institute for Amphibian Biology, Graduate School of Science, Hiroshima University, Higashihiroshima, Japan.

出版信息

Hereditas. 2013 Feb;150(1):1-9. doi: 10.1111/j.1601-5223.2013.02284.x. Epub 2013 Feb 20.

Abstract

Mitochondrial membrane permeability transition (MPT) plays a crucial role in apoptotic tail shortening during anuran metamorphosis. L-carnitine is known to shuttle free fatty acids (FFAs) from the cytosol into mitochondria matrix for β-oxidation and energy production, and in a previous study we found that treatment with L-carnitine suppresses 3, 3', 5-triiodothyronine (T3 ) and FFA-induced MPT by reducing the level of FFAs. In the present study we focus on acetyl-L-carnitine, which is also involved in fatty acid oxidation, to determine its effect on T3 -induced tail regression in Rana rugosa tadpoles and spontaneous tail regression in Xenopus laevis tadpoles. The ladder-like DNA profile and increases in caspase-3 and caspase-9 indicative of apoptosis in the tails of T3 -treated tadpoles were found to be suppressed by the addition of acetyl-L-carnitine. Likewise, acetyl-L-carnitine was found to inhibit thyroid hormone regulated spontaneous metamorphosis in X. laevis tadpoles, accompanied by decreases in caspase and phospholipase A2 activity, as well as non-ladder-like DNA profiles. These findings support our previous conclusion that elevated levels of FFAs initiate MPT and activate the signaling pathway controlling apoptotic cell death in tadpole tails during anuran metamorphosis.

摘要

线粒体膜通透性转换 (MPT) 在蛙类变态过程中凋亡尾部缩短中起着至关重要的作用。已知左旋肉碱可将游离脂肪酸 (FFA) 从细胞质穿梭到线粒体基质中进行β氧化和能量产生,在之前的研究中我们发现,左旋肉碱的处理通过降低 FFA 水平来抑制 3,3',5-三碘甲状腺原氨酸 (T3) 和 FFA 诱导的 MPT。在本研究中,我们专注于参与脂肪酸氧化的乙酰左旋肉碱,以确定其对 Rana rugosa 蝌蚪 T3 诱导的尾部退化和 Xenopus laevis 蝌蚪自发尾部退化的影响。发现在 T3 处理的蝌蚪尾部中,梯状 DNA 图谱的增加和 caspase-3 和 caspase-9 的增加表明凋亡,而添加乙酰左旋肉碱可抑制这种情况。同样,发现乙酰左旋肉碱抑制了甲状腺激素调节的 X. laevis 蝌蚪的自发变态,同时降低了 caspase 和磷脂酶 A2 的活性,以及非梯状 DNA 图谱。这些发现支持我们之前的结论,即升高的 FFA 水平引发 MPT 并激活控制蛙类变态过程中蝌蚪尾部凋亡细胞死亡的信号通路。

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