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Biogenesis, assembly, and regulation of the retinal cofactor of bacteriorhodopsin in Halobacterium salinarum.

机译:盐细菌嗜盐杆菌中细菌视紫红质的视网膜辅因子的生物发生,组装和调控。

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摘要

Many integral membrane proteins require specific organic cofactors that are essential for function. These cofactors must be transported from their site of biosynthesis or uptake in the cell and assembled with membrane apoproteins within the lipid bilayer. When cofactors are synthesized in the cell, cofactor and apoprotein synthesis is coordinately regulated. The focus of this thesis is the identification of proteins that are potentially involved in cofactor assembly or coordinate regulation of cofactor and apoprotein synthesis in integral membrane protein-cofactor complexes.;The archaeon Halobacterium salinarum produces bacteriorhodopsin (BR), an integral membrane protein with a bound retinal cofactor. The relative simplicity of the BR structure and the experimental tractability of H. salinarum make it an excellent model system to study cofactor assembly to apoproteins and regulation of cofactor biosynthesis. I developed an efficient method for gene-replacement in H. salinarum and used this method to make deletions in genes involved with metabolism of the retinal cofactor.;Deletion of the brp and blh genes resulted in a loss of BR and retinal synthesis, and increased accumulation of the immediate retinal precursor, beta-carotene. These data suggest that brp and blh encode proteins involved in the conversion of beta-carotene to retinal or transport of retinal to the apoprotein bacterioopsin (BO). Deletion of the H. salinarum crtY gene resulted in a loss of BR, retinal, and beta-carotene and increased accumulation of lycopene. Heterologous expression of crtY in E. coli was sufficient to convert lycopene to beta-carotene. These results indicated that crtY encodes a lycopene cyclase required for the synthesis of the retinal cofactor of (BR),;In summary, I have employed a deletion approach to identify three genes involved in the synthesis of the retinal cofactor of BR. Brp and Blh may be involved with the transport or assembly of retinal to BO. CrtY is likely the lycopene cyclase in H. salinarum, and this identification will allow the testing of the regulatory model that BO stimulates lycopene cyclase activity. The proteins identified and techniques developed in this thesis may provide insight into cofactor assembly with integral membrane proteins and coordinate regulation of cofactor and apoprotein synthesis.
机译:许多完整的膜蛋白需要功能必需的特定有机辅因子。这些辅因子必须从它们的生物合成或转运位置转移到细胞中,并与脂质双层中的膜载脂蛋白组装在一起。当辅因子在细胞中合成时,辅因子和载脂蛋白的合成受到协调调节。本论文的重点是鉴定可能与整合膜蛋白-辅因子复合物中辅因子装配或协调调节辅因子和载脂蛋白合成有关的蛋白。古细菌盐杆菌产生细菌视紫红质(BR),一种具有膜蛋白的整合膜蛋白。结合视网膜辅因子。 BR结构的相对简单性和盐沼的实验可延展性使其成为研究辅因子装配成载脂蛋白和调节辅因子生物合成的极佳模型系统。我开发了一种有效的盐沼螺旋藻基因置换方法,并使用该方法删除了涉及视网膜辅因子代谢的基因。; brp和blh基因的缺失导致BR和视网膜合成的缺失,并增加了眼前视网膜前体β-胡萝卜素的积累。这些数据表明brp和blh编码参与β-胡萝卜素向视网膜转化或视网膜向载脂蛋白细菌素(BO)转运的蛋白质。盐沼嗜血杆菌crtY基因的缺失导致BR,视网膜和β-胡萝卜素的丢失以及番茄红素的积累增加。 crtY在大肠杆菌中的异源表达足以将番茄红素转化为β-胡萝卜素。这些结果表明,crtY编码合成(BR)的视网膜辅因子所需的番茄红素环化酶。总之,我采用了一种缺失方法来鉴定参与BR的视网膜辅因子合成的三个基因。 Brp和Blh可能参与视网膜向BO的运输或组装。 CrtY可能是盐沼中的番茄红素环化酶,这种鉴定将允许测试BO刺激番茄红素环化酶活性的调节模型。本文确定的蛋白质和开发的技术可以为与完整膜蛋白的辅因子组装提供指导,并协调辅因子和载脂蛋白合成的调控。

著录项

  • 作者

    Peck, Ronald F.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Chemistry Biochemistry.;Biology Cell.;Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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