CD14与MD-2的脂多糖结合功能比较。

Jun Koraha, Naoko Tsuneyoshi, Masao Kimoto, Jean-Francois Gauchat, Hiroshi Nakatake, Kenji Fukudome
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引用次数: 15

摘要

在被细胞表面toll样受体4/MD-2复合体识别之前,细菌外膜中的脂多糖(LPS)必须经过脂多糖结合蛋白和CD14的加工。CD14与LPS结合蛋白提取的单体LPS形成复合物,并将LPS传递到细胞表面信号复合物。在之前的研究中,我们利用细菌表达系统制备了功能性重组MD-2。我们在大肠杆菌中表达重组蛋白作为硫氧还蛋白的融合蛋白,并证明了与LPS的特异性结合。在本研究中,我们使用相同的方法制备了重组CD14融合蛋白。LPS与含有151个氨基末端残基的重组蛋白特异性结合。该区域包含一个亲水性区域和前三个富含亮氨酸的重复序列(lrr)。lrr似乎有助于结合,因为该区域的去除导致结合功能的降低。与重组MD-2结合的LPS对洗涤剂具有抗性。另一方面,在低浓度洗涤剂的存在下,与CD14的结合被阻止。在人MD-2的情况下,需要LpxM添加的LPS的二级肉豆蔻酰基链才能结合。缺乏肉豆荚酰基链的非致病性五酰基LPS突变体不能与MD-2结合,但可以正常地与CD14结合。CD14更广泛的LPS结合谱可能允许识别多种病原体,并且CD14对LPS结合的较低亲和力允许捕获的物质传播到MD-2。
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Comparison of lipopolysaccharide-binding functions of CD14 and MD-2.

Prior to being recognized by the cell surface Toll-like receptor 4/MD-2 complex, lipopolysaccharide (LPS) in the bacterial outer membrane has to be processed by LPS-binding protein and CD14. CD14 forms a complex with monomeric LPS extracted by LPS-binding protein and transfers LPS to the cell surface signaling complex. In a previous study, we prepared a functional recombinant MD-2 using a bacterial expression system. We expressed the recombinant protein in Escherichia coli as a fusion protein with thioredoxin and demonstrated specific binding to LPS. In this study, we prepared recombinant CD14 fusion proteins using the same approach. Specific binding of LPS was demonstrated with a recombinant protein containing 151 amino-terminal residues. The region contained a hydrophilic region and the first three leucine-rich repeats (LRRs). The LRRs appeared to contribute to the binding because removal of the region resulted in a reduction in the binding function. LPS binding to the recombinant MD-2 was resistant to detergents. On the other hand, the binding to CD14 was prevented in the presence of low concentrations of detergents. In the case of human MD-2, the secondary myristoyl chain of LPS added by LpxM was required for the binding. A nonpathogenic penta-acyl LPS mutant lacking the myristoyl chain did not bind to MD-2 but did so normally to CD14. The broader LPS-binding spectrum of CD14 may allow recognition of multiple pathogens, and the lower affinity for LPS binding of CD14 allows transmission of captured materials to MD-2.

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