去氢leucdine - α -亚甲基- γ -内酯在蟾卵细胞GVBD抑制中的作用。

Zygote (Cambridge, England) Pub Date : 2010-02-01 Epub Date: 2009-08-10 DOI:10.1017/S0967199409990086
G Sánchez Toranzo, L A López, J Zapata Martínez, M C Gramajo Bühler, M I Bühler
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引用次数: 5

摘要

从阿根廷药用植物道格拉斯蒿(Artemisia douglasiana Besser)的地上部分分离纯化了一种倍半萜内酯——去氢亮氨酸(Dehydroleucodine, DhL)。DhL是一个与七元环相连的-亚甲基丁基- γ -内酯环,与外环α, β -不饱和环戊酮环融合。以前的研究表明,DhL选择性地诱导分生组织细胞和血管平滑肌细胞的G2剂量依赖性瞬时停搏。在G2(减数分裂i期开始)时,用DhL处理会以剂量依赖的方式抑制大黄蟾完全成熟的卵母细胞的自发成熟和黄体酮诱导的成熟。然而,这一过程所涉及的机制的性质仍然未知。这项工作的目的是分析DhL的α -亚甲基- γ -内酯功能是否对蟾沙卵母细胞减数分裂再起始的抑制作用负责,以及使用对α -亚甲基内酯失活的DhL衍生物11,13-二氢-去氢-乙酰胆碱(2H-DhL)可能参与这种作用的一些转导途径。在成熟促进因子(MPF)扩增实验中,用2H-DhL注射具有活性MPF的细胞质和生发囊泡内容物,结果与用DhL获得的结果相似,表明氢化衍生物的作用方式与DhL相似。用DhL或2H-DhL预处理不影响H89(一种蛋白激酶a (PKA)抑制剂)诱导的生发囊泡破裂(GVBD)的百分比,这表明这些内酯会作用于诱导MPF激活的信号通路的另一个步骤。DhL和2H-Dhl均能抑制冈田酸微注射诱导的GVBD,这表明它们可能作用于Myt1激酶的活性。注射GV内容物的实验也支持了这一观点,在实验中也观察到这些内酯对GVBD的抑制作用。我们的研究结果表明,DhL对减数分裂进程的抑制作用不仅取决于α -亚甲基内酯功能的活性,因为其氢化衍生物2H-DhL的该功能已经失活,对两栖动物卵母细胞也会产生类似的作用。然而,2H-DhL的活性低于DhL,因为需要更高的剂量才能获得显著的抑制作用。另一方面,对某些介质参与导致MPF激活的一些信号通路的分析表明,Myt1激酶可能是这些内酯的靶标,而cdc25磷酸酶不会受到影响。此外,PKA抑制实验表明,这些内酯在信号通路中起作用较早。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Involvement of the dehydroleucodine alpha-methylene-gamma-lactone function in GVBD inhibition in Bufo arenarum oocytes.

Dehydroleucodine (DhL), a sesquiterpenic lactone, was isolated and purified from aerial parts of Artemisia douglasiana Besser, a medicinal herb used in Argentina. DhL is an alpha-methylene butyro-gamma-lactone ring connected to a seven-membered ring fused to an exocyclic alpha,beta-unsaturated cyclopentenone ring. It has been previously shown that DhL selectively induces a dose-dependent transient arrest in G2 of both meristematic cells and vascular smooth muscle cells. Treatment with DhL induces an inhibition of spontaneous and progesterone-induced maturation in a dose-dependent manner in Bufo arenarum fully grown oocytes arrested at G2, at the beginning of meiosis I. However, the nature of the mechanisms involved in the process is still unknown. The aim of this work was to analyse whether DhL's alpha-methylene-gamma-lactone function is responsible for the inhibition effect on meiosis reinitiation of Bufo arenarum oocytes as well as some of the transduction pathways that could be involved in this effect using a derivative of DhL inactivated for alpha-methylenelactone, the 11,13-dihydro-dehydroleucodine (2H-DhL). The use of 2H-DhL in the maturation promoting factor (MPF) amplification experiments by injection of both cytoplasm with active MPF and of germinal vesicle content showed results similar to the ones obtained with DhL, suggesting that the hydrogenated derivative would act in a similar way to DhL. Pretreatment with DhL or 2H-DhL did not affect the percentage of germinal vesicle breakdown (GVBD) induced by H89, a protein kinase A (PKA) inhibitor, which suggests that these lactones would act on another step of the signalling pathway that induces MPF activation. The fact that both DhL and 2H-Dhl inhibit GVBD induced by okadaic acid microinjection suggests that they could act on the activity of the Myt1 kinase. This idea is supported by the experiments of injection of GV contents in which an inhibitory effect of these lactones on GVBD was also observed. Our results indicate that the inhibitory effect on meiosis progression of DhL does not depend only on the activity of the alpha-methylenelactone function, as its hydrogenated derivative, 2H-DhL, in which this function has been inactivated, causes similar effects on amphibian oocytes. However, 2H-DhL was less active than DhL as higher doses were required to obtain a significant inhibition. On the other hand, the analysis of the participation of certain mediators in some of the signalling pathways leading to MPF activation suggests that the Myt1 kinase could be a target of these lactones, while cdc25 phosphatase would not be affected. Besides, the PKA inhibition assays indicate that these lactones would act earlier in the signalling pathways.

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