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在小脑颗粒细胞走向凋亡的过程中,ATP水平会升高,其中ATP来源于氧化磷酸化和无氧糖酵解。

An increase in the ATP levels occurs in cerebellar granule cells en route to apoptosis in which ATP derives from both oxidative phosphorylation and anaerobic glycolysis.

作者信息

Atlante Anna, Giannattasio Sergio, Bobba Antonella, Gagliardi Sara, Petragallo Vito, Calissano Pietro, Marra Ersilia, Passarella Salvatore

机构信息

Istituto di Biomembrane e Bioenergetica, CNR, Via G. Amendola, 165/A-70126 Bari, Italy.

出版信息

Biochim Biophys Acta. 2005 Jun 1;1708(1):50-62. doi: 10.1016/j.bbabio.2005.01.009. Epub 2005 Feb 7.

Abstract

Although it is recognized that ATP plays a part in apoptosis, whether and how its level changes en route to apoptosis as well as how ATP is synthesized has not been fully investigated. We have addressed these questions using cultured cerebellar granule cells. In particular, we measured the content of ATP, ADP, AMP, IMP, inosine, adenosine and L-lactate in cells undergoing apoptosis during the commitment phase (0-8 h) in the absence or presence of oligomycin or/and of citrate, which can inhibit totally the mitochondrial oxidative phosphorylation and largely the substrate-level phosphorylation in glycolysis, respectively. In the absence of inhibitors, apoptosis was accompanied by an increase in ATP and a decrease in ADP with 1:1 stoichiometry, with maximum ATP level found at 3 h apoptosis, but with no change in levels of AMP and its breakdown products and with a relatively low level of L-lactate production. Consistently, there was an increase in the cell energy charge and in the ratio ([ATP][AMP])/ADP. When the oxidative phosphorylation was completely blocked by oligomycin, a decrease of the ATP content was found both in control cells and in cells undergoing apoptosis, but nonetheless cells still died by apoptosis, as shown by checking DNA laddering and by death prevention due to actinomycin D. In this case, ATP was provided by anaerobic glycolysis, as suggested by the large increase of L-lactate production. On the other hand, citrate itself caused a small decrease in ATP level together with a huge decrease in L-lactate production, but it had no effect on cell survival. When ATP level was further decreased due to the presence of both oligomycin and citrate, death occurred via necrosis at 8 h, as shown by the lack of DNA laddering and by death prevention found due to the NMDA receptor antagonist MK801. However, at a longer time, when ATP level was further decreased, cells died neither via apoptosis nor via glutamate-dependent necrosis, in a manner similar to something like to energy catastrophe. Our results shows that cellular ATP content increases in cerebellar granule cell apoptosis, that the role of oxidative phosphorylation is facultative, i.e. ATP can also derive from anaerobic glycolysis, and that the type of cell death depends on the ATP availability.

摘要

尽管人们认识到ATP在细胞凋亡中起作用,但在细胞凋亡过程中其水平是否以及如何变化,以及ATP是如何合成的,尚未得到充分研究。我们利用培养的小脑颗粒细胞解决了这些问题。具体而言,我们测量了在无或有寡霉素或/和柠檬酸盐存在的情况下,处于凋亡起始阶段(0 - 8小时)的细胞中ATP、ADP、AMP、IMP、肌苷、腺苷和L - 乳酸的含量,寡霉素和柠檬酸盐分别可完全抑制线粒体氧化磷酸化和很大程度上抑制糖酵解中的底物水平磷酸化。在没有抑制剂的情况下,细胞凋亡伴随着ATP增加和ADP以1:1化学计量比减少,在凋亡3小时时ATP水平达到最高,但AMP及其分解产物水平没有变化,L - 乳酸产生水平相对较低。一致地,细胞能量电荷以及([ATP][AMP])/ADP比值增加。当氧化磷酸化被寡霉素完全阻断时,对照细胞和正在经历凋亡的细胞中ATP含量均降低,但细胞仍然通过凋亡死亡,通过检测DNA梯状条带以及放线菌素D可预防死亡得以证明。在这种情况下,ATP由无氧糖酵解提供,L - 乳酸产生大量增加表明了这一点。另一方面,柠檬酸盐本身导致ATP水平略有下降以及L - 乳酸产生大幅下降,但对细胞存活没有影响。当由于同时存在寡霉素和柠檬酸盐导致ATP水平进一步降低时,8小时时细胞通过坏死死亡,通过缺乏DNA梯状条带以及NMDA受体拮抗剂MK801可预防死亡得以证明。然而,在更长时间,当ATP水平进一步降低时,细胞既不通过凋亡也不通过谷氨酸依赖性坏死死亡,类似于能量灾难的方式。我们的结果表明,小脑颗粒细胞凋亡过程中细胞ATP含量增加,氧化磷酸化的作用是可有可无的,即ATP也可来源于无氧糖酵解,并且细胞死亡类型取决于ATP的可利用性。

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