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微管-溶酶体相互作用的调节:镁离子激活,三磷酸腺苷抑制。

Regulation of the microtubule-lysosome interaction: activation by Mg2+ and inhibition by ATP.

作者信息

Mithieux G, Rousset B

机构信息

Institut National de la Santé et de la Recherche Médicale, Unité 197, Lyon, France.

出版信息

Biochim Biophys Acta. 1988 Aug 19;971(1):29-37. doi: 10.1016/0167-4889(88)90158-9.

Abstract

We developed a sedimentation assay to characterize and quantify the association of purified lysosomes to reconstituted microtubules (Mithieux, G., Audebet, C. and Rousset. B. (1988) Biochim. Biophys. Acta 969, 121-130). In the present work, we have examined the potential regulatory role of ATP and Mg2+ on the microtubule-lysosome interaction. The formation of microtubule-lysosome complexes takes place in the absence of Mg2+, but is activated by the addition of Mg2+; both the rate of the interaction and the amount of complexes formed are increased. The maximal effect is observed between 1.5 and 3.5 mM free Mg2+. Measured at the plateau of the interaction, the proportion of microtubules bound to lysosomes increases as a function of free Mg2+ concentration; at optimal concentration of free Mg2+, 90% of the microtubules present in the incubation mixture are bound to lysosomes. ATP induces a concentration-dependent inhibition of the formation of microtubule-lysosome complexes. The half-maximal effect is obtained at an ATP concentration of 0.83 +/- 0.11 mM (n = 7). The effect of ATP is not related to ATP hydrolysis, since ATP exerts its inhibitory action in the presence of EDTA. The ATP effect is mimicked by GTP, p[NH]ppA and tripolyphosphate, ADP and pyrophosphate, but not by AMP or phosphate. In the presence of 1 mM ATP, a Mg2+ concentration of 3 mM (corresponding to 2 mM free Mg2+) is required to overcome the inhibition caused by ATP; above 3 mM, Mg2+ exerts its activating effect. Since the modulating effects of ATP and Mg2+ are obtained at concentrations closed to those occurring in intact cells, we conclude that the regulation of the microtubule-lysosome interaction reported in this paper could be of physiological significance.

摘要

我们开发了一种沉降分析方法,以表征和量化纯化的溶酶体与重组微管的结合(米蒂厄,G.,奥德贝特,C.和鲁塞特,B.(1988年)《生物化学与生物物理学报》969,121 - 130)。在本研究中,我们研究了ATP和Mg2 +对微管 - 溶酶体相互作用的潜在调节作用。微管 - 溶酶体复合物的形成在没有Mg2 +的情况下发生,但通过添加Mg2 +被激活;相互作用的速率和形成的复合物的量都增加了。在1.5至3.5 mM游离Mg2 +之间观察到最大效应。在相互作用的平稳期测量,与溶酶体结合的微管比例随游离Mg2 +浓度的增加而增加;在游离Mg2 +的最佳浓度下,孵育混合物中90%的微管与溶酶体结合。ATP诱导微管 - 溶酶体复合物形成的浓度依赖性抑制。在ATP浓度为0.83±0.11 mM(n = 7)时获得半数最大效应。ATP的作用与ATP水解无关,因为ATP在EDTA存在下发挥其抑制作用。GTP、p[NH]ppA和三聚磷酸、ADP和焦磷酸模拟了ATP的作用,但AMP或磷酸盐没有。在存在1 mM ATP的情况下,需要3 mM的Mg2 +浓度(对应于2 mM游离Mg2 +)来克服ATP引起的抑制;高于3 mM时,Mg2 +发挥其激活作用。由于ATP和Mg2 +的调节作用是在接近完整细胞中发生的浓度下获得的,我们得出结论,本文报道的微管 - 溶酶体相互作用的调节可能具有生理意义。

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