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首页> 外文期刊>Biochemistry >Amino Acid Residues of Escherichia coli Acyl Carrier Protein Involved in Heterologous Protein Interactions.
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Amino Acid Residues of Escherichia coli Acyl Carrier Protein Involved in Heterologous Protein Interactions.

机译:大肠杆菌酰基载体蛋白的氨基酸残基参与异源蛋白相互作用。

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Acyl carrier protein (ACP) is a small, highly conserved protein with an essential role in a myriad of reactions throughout lipid metabolism in plants and bacteria where it interacts with a remarkable diversity of proteins. The nature of the proper recognition and precise alignment between the protein moieties of ACP and its many interactive proteins is not understood. Residues conserved among ACPs from numerous plants and bacteria were considered as possibly being crucial to ACP's function, including protein-protein interaction, and a method of identifying amino acid residue clusters of high hydrophobicity on ACP's surface was used to estimate residues possibly involved in specific ACP-protein interactions. On the basis of this information, single-site mutation analysis of multiple residues, one at a time, of ACP was used to probe the identities of potential contact residues of ACPSH or acyl-ACP involved in specific interactions with selected enzymes. The roles of particular ACP residues were more precisely defined by site-directed fluorescence analyses of various myristoyl-mutant-ACPs upon specific interaction with the Escherichia coli hemolysin-activating acyltransferase, HlyC. This was done by selectively labeling each mutated site, one at a time, with an environmentally sensitive fluoroprobe and observing its fluorescence behavior in the absence and presence of HlyC. Consequently, a picture of the portion of ACP involved in selected macromolecular interaction has emerged.
机译:酰基载体蛋白(ACP)是一种高度保守的小蛋白,在植物和细菌的脂质代谢过程中无数种重要反应中起着至关重要的作用,在该反应中,该蛋白与多种多样的蛋白相互作用。尚不了解在ACP的蛋白质部分与其许多相互作用的蛋白质之间进行正确识别和精确比对的性质。许多植物和细菌的ACP中保守的残基被认为可能对ACP的功能至关重要,包括蛋白质之间的相互作用,并且使用一种在ACP表面识别高疏水性氨基酸残基簇的方法来估计可能与特定ACP有关的残基-蛋白质相互作用。根据此信息,一次对ACP的多个残基进行单点突变分析,以探测参与与选定酶的特异性相互作用的ACPSH或酰基ACP的潜在接触残基的身份。在与大肠杆菌溶血素激活酰基转移酶HlyC特异性相互作用后,通过各种肉豆蔻酰突变体-ACP的定点荧光分析,可以更精确地定义特定ACP残基的作用。通过使用环境敏感的氟探针一次一次选择性标记每个突变位点,并在不存在和存在HlyC的情况下观察其荧光行为来完成此操作。因此,出现了涉及选定的大分子相互作用的ACP部分的图片。

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