Ionic Charge and pH Regulation of Apoptotic Signaling
Ionic Charge and pH Regulation of Apoptotic Signaling
批准号:
6517947
负责人:
MARK S. SEGAL
金额:
$7.25万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-09-15 至 2005-06-30
中文摘要
该提案是对PAR-98-087“K08受助人小额资助计划”的响应,并与NIH K08 DK02537相关联。内皮细胞凋亡在溶血性尿毒症综合征和其他急性肾功能衰竭的发病机制中起重要作用。这项研究将通过研究离子电荷和碱性条件抑制细胞色素c介导的caspase-3激活的分子机制,促进我们对内皮细胞凋亡的生物化学的理解。我们已经建立了一种细胞色素c依赖的胞浆caspase-3激活的体外检测方法,允许识别和表征该过程中的不同步骤。在本实验中,细胞色素c加入胞浆可启动凋亡体(细胞色素c、凋亡激活因子-1和dATP/ATP的寡聚体)的形成,从而激活caspase-9,进而激活caspase-3。我们发现,在正常的细胞内浓度下,碱性pH和阳离子都抑制了caspase-3的激活。过量的细胞色素c抑制了高pH对caspase-3的抑制作用,但不影响阳离子对caspase-3的抑制作用,提示在caspase-3激活过程中,pH和阳离子强度在两个不同的步骤中起作用。这项提议将检验从这些观察中得出的两个总体假设。首先,碱性pH影响凋亡体的形成,而离子电荷阻止caspase-9的激活。第二,非阳离子渗透溶质的细胞积累是caspase-3激活所必需的阳离子强度降低所必需的。其具体目的是1)建立caspase-9激活的体外实验,并确定碱性和高阳离子强度对激活的影响;2)使用大小分离柱,在高离子电荷和碱性条件下研究凋亡体的形成和组成;以及3)通过在体外实验中检测潜在的渗透调节物质,如氨基酸和单糖和双糖,是否干扰caspase-3的激活,并通过比较非凋亡细胞和凋亡细胞的胞浆渗透溶质含量的差异,来研究非阳离子溶质积累在细胞凋亡中的作用。这笔补助金还将提高申请人的研究效率、财政独立性和职业发展,进一步推动他成为一名独立的调查人员。
英文摘要
This proposal is in response to PAR-98-087, "Small grant program for K08 recipients," and is linked to NIH K08 DK02537. Endothelial cell apoptosis has an essential role in the pathogenesis of hemolytic uremic syndrome and other causes of acute renal failure. The studies in this proposal will advance our understanding of the biochemistry of endothelial cell apoptosis by examining the molecular mechanism by which ionic charge and alkaline conditions inhibit cytochrome c- mediated activation of caspase-3. We have developed an in vitro assay of cytochrome c-dependent activation of cytosolic caspase-3 allowing discrete steps in the process to be identified and characterized. In this assay cytochrome c added to cytosol initiates the formation of apoptosomes (oligomers of cytochrome c, apoptosis activating factor-1, and dATP/ATP) resulting in activation of caspase-9, which subsequently activates caspase-3. We showed that both alkaline pH and cations, at normal intracellular concentrations, inhibited activation of caspase-3. Excess cytochrome c suppressed the inhibition by high pH, but did not affect the inhibition by cations, suggesting that pH and cationic strength act at two different steps in caspase-3 activation. This proposal will test two overall hypotheses derived from these observations. First, that alkaline pH affects the formation of apoptosomes, whereas ionic charge prevents caspase-9 activation. Second, that cellular accumulation of a non-cationic osmotic solute is required for the decrease in cationic strength necessary for caspase-3 activation. The Specific Aims are 1) to develop an in vitro assay for caspase-9 activation, and determine the effect of alkalinity and high cationic strength on activation; 2) to study the formation and constituents of apoptosomes, using a size separation column, under high ionic charge and alkaline conditions; and 3) to examine the role of non- cationic solute accumulation in apoptosis by testing if potential osmoles, such as amino acids and mono- and di-saccharides, interfere with caspase-3 activation in our in vitro assay, and by comparing cytosol from nonapoptotic and apoptotic cells using liquid chromatography for differences in osmotic solute content. This grant will also enhance the research productivity, fiscal independence and career development of the applicant furthering his advancement towards becoming an independent investigator.
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