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铜绿假单胞菌PctA和PctB氨基酸化学感受器中信号输入与输出的相关性。

Correlation between signal input and output in PctA and PctB amino acid chemoreceptor of Pseudomonas aeruginosa.

作者信息

Reyes-Darias José A, Yang Yiling, Sourjik Victor, Krell Tino

机构信息

Department of Environmental Protection, Estación Experimental del Zaidín, Consejo Superior de Investigaciones Científicas, C/ Prof. Albareda, 1, Granada, 18008, Spain.

出版信息

Mol Microbiol. 2015 May;96(3):513-25. doi: 10.1111/mmi.12953. Epub 2015 Mar 4.

Abstract

The PctA and PctB chemoreceptors of Pseudomonas aeruginosa mediate chemotaxis toward amino acids. A general feature of signal transduction processes is that a signal input is converted into an output. We have generated chimeras combining the Tar signaling domain with either the PctA or PctB ligand binding domain (LBD). Escherichia coli harboring either PctA-Tar or PctB-Tar mediated chemotaxis toward amino acids. The responses of both chimeras were determined using fluorescence resonance energy transfer, and the derived EC50 values are a measure of output. PctA-Tar and PctB-Tar responded to 19 and 11 L-amino acids respectively. The EC50 values of PctA-Tar responses differed by more than three orders of magnitude, whereas PctB-Tar responded preferentially to L-Gln. The comparison of amino acid binding constants and the corresponding EC50 values for both receptors revealed statistically significant correlations between inputs and outputs. PctA and PctB possess a double PDC (PhoQ-DcuS-CitA) LBD - a family of binding domain found in various other amino acid chemoreceptors. Similarly, various chemoreceptors share the preferential response to certain amino acids (e.g. L-Cys, L-Ser and L-Thr) that we observed for PctA. Defining the specific inputs and outputs of these chemoreceptors is an important step toward better understanding of their physiological role.

摘要

铜绿假单胞菌的PctA和PctB化学感受器介导对氨基酸的趋化作用。信号转导过程的一个普遍特征是信号输入被转化为输出。我们构建了将Tar信号结构域与PctA或PctB配体结合结构域(LBD)相结合的嵌合体。携带PctA-Tar或PctB-Tar的大肠杆菌介导对氨基酸的趋化作用。使用荧光共振能量转移测定两种嵌合体的反应,得到的EC50值是输出的一种度量。PctA-Tar和PctB-Tar分别对19种和11种L-氨基酸有反应。PctA-Tar反应的EC50值相差三个多数量级,而PctB-Tar优先对L-谷氨酰胺有反应。两种受体的氨基酸结合常数与相应EC50值的比较揭示了输入与输出之间具有统计学意义的相关性。PctA和PctB具有双PDC(PhoQ-DcuS-CitA)LBD——在各种其他氨基酸化学感受器中发现的一种结合结构域家族。同样,各种化学感受器对某些氨基酸(如我们在PctA中观察到的L-半胱氨酸、L-丝氨酸和L-苏氨酸)具有优先反应。确定这些化学感受器的特定输入和输出是更好地理解其生理作用的重要一步。

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