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Intracellular transfer of cholesterol in mosquitoes

Intracellular transfer of cholesterol in mosquitoes
蚊子体内胆固醇的细胞内转移
批准号:
7598938
负责人:
QUE LAN
金额:
$24.28万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-05-15 至 2011-04-30

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中文摘要
翻译
描述(由申请人提供):我们的长期目标是阐明胆固醇代谢的一个基本方面:疏水胆固醇分子通过亲水性细胞基质的传递以及这一过程的生理重要性。不能合成胆固醇使得昆虫高度依赖于细胞固醇转运的有效运输机制。我们一直在研究蚊子固醇载体蛋白-2 (AeSCP-2)在细胞内胆固醇转移中的作用。具体的假设是AeSCP-2是这个过程中的一个重要环节。这一假设是基于对埃及伊蚊幼虫中AeSCP-2表达沉默导致体内胆固醇掺入减少和蚊子死亡率高的观察结果。我们通过一个小的化学文库的高通量筛选鉴定了几种AeSCP-2抑制剂(scpi)。使用新发现的抑制剂抑制AeSCP-2功能可抑制体内胆固醇摄取,并导致蚊子幼虫的高死亡率。scpi对埃及伊蚊、冈比亚按蚊和淡库蚊均有较好的杀幼虫效果,说明甾醇载体蛋白-2在不同蚊种中具有功能相似性。具体目的1:在细胞培养模型系统中确定AeSCP-2介导的细胞内胆固醇的机制。我们将把野生型和突变的AeSCP-2的存在和功能与培养细胞内胆固醇摄取和胆固醇再分配联系起来。具体目标2:利用新发现的抑制剂和RNA干扰(RNAi)在蚊子生物模型系统中研究AeSCP-2在协调固醇和胆固醇吸收中的作用。具体目的3:确定AeSCP-2基因的转录调控。AeSCP-2基因的表达与胆固醇吸收和再分配需求高的生理过程有关。通过对AeSCP-2基因的研究,将发现协调胆固醇代谢生理事件的重要转录因子。这项研究的结果将提供有关甾醇载体蛋白-2功能的深刻信息,并将阐明该基因的调控。这些结果也将验证以胆固醇代谢为目标来开发控制蚊子种群的新策略的潜力。
英文摘要
DESCRIPTION (provided by applicant): Our long-term goal is to elucidate one of the fundamental aspects of cholesterol metabolism: delivery of the hydrophobic cholesterol molecule through the hydrophilic cellular matrix and the physiological importance of this process. The inability to synthesize cholesterol makes insects highly dependent on the efficient transport mechanisms involved in cellular sterol translocation. We have been investigating the role of a mosquito sterol carrier protein-2 (AeSCP-2) in intracellular cholesterol transfer. The specific hypothesis is that AeSCP-2 is a vital link in the process. This hypothesis is based on the observations that silencing AeSCP-2 expression in Aedes aegypti larvae results in decreased incorporation of cholesterol in vivo and a high mortality rate in mosquitoes. We have identified several AeSCP-2 inhibitors (SCPIs) via high throughput screening of a small chemical library. Inhibition of AeSCP-2 function using the newly discovered inhibitors suppresses cholesterol uptake in vivo and results in a high mortality rate in mosquito larvae. SCPIs are effective larvicides in Aedes aegypti, Anopheles gambiae and Culex pipiens, indicating that a sterol carrier protein-2 has functional similarity in different mosquito species. Specific aim 1: Determine the mechanism of AeSCP-2 mediated intracellular cholesterol in a cell culture model system. We will correlate the presence and the function of wild-type and mutated AeSCP-2 to cholesterol uptake and cholesterol redistribution within the cultured cells. Specific aim 2: Examine the roles of AeSCP-2 in coordinating the absorption of sterols and cholesterol using newly discovered inhibitors and RNA interference (RNAi) in a mosquito organism model system. Specific aim 3: Determine the transcriptional regulation of the AeSCP-2 gene. Expression of the AeSCP-2 gene is correlated with physiological processes in which the demand for cholesterol absorption and redistribution is high. Important transcription factors that coordinate physiological events in cholesterol metabolism will be identified through the study of the AeSCP-2 gene. Results from this study will yield insightful information involving the function of sterol carrier protein-2 and will shed light on the regulation of the gene. The results will also validate the potential of targeting cholesterol metabolism for the development of new strategies to control mosquito populations.
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Genetic tools for manipulation of mosquitoes
TRAINING IN THE USE OF BRUKER AND VARIAN SPECTROMETERS AND NMR
NMR STRUCTURE DETERMINATION OF STEROL CARRIER PROTEIN-2 FROM AEDES AEGYPTI
NMR STRUCTURE DETERMINATION OF STEROL CARRIER PROTEIN-2 FROM AEDES AEGYPTI
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