Heguy A, Baldari C T, Macchia G, Telford J L, Melli M
Sclavo Research Center, Siena, Italy.
J Biol Chem. 1992 Feb 5;267(4):2605-9.
The cytoplasmic domain of the human T cell-type interleukin-1 receptor (hIL-1R) is not involved in the binding, internalization, or nuclear localization of interleukin-1 (IL-1), but is essential for signal transduction. We have previously localized a 50-amino acid region (residues 477-527) critical for IL-1-mediated activation of the interleukin-2 promoter in T cells. This region displays a striking degree of amino acid conservation in human, murine, and chicken IL-1Rs. Here we report the results of a site-directed mutational analysis of the cytoplasmic domain of the hIL-1R. We have introduced single-amino acid substitutions at positions conserved in all three receptors and at nonconserved positions and identified key amino acids for IL-1R function in signal transduction. Three basic (Arg431, Lys515, and Arg518) and 3 aromatic (Phe513, Trp514, and Tyr519) amino acids that are conserved in human, murine, and chicken IL-1Rs could not be replaced without abolishing IL-1R-mediated signal transduction. A substitution at another conserved position (Pro521) reduces significantly the ability of the IL-1R to transmit the IL-1 signal. Nonconserved residues could be replaced without affecting signal transduction. The cytoplasmic domain of the IL-1R is related to that of the Drosophila Toll protein, with a 26% identity and a 43% similarity in amino acid sequence. The amino acids shown to be essential for IL-1R function are conserved in the Toll protein. Our experimental data indicate that the amino acid sequence similarity between the IL-1R and the Drosophila toll protein reflects a functional homology between the two proteins.
人T细胞型白细胞介素-1受体(hIL-1R)的胞质结构域不参与白细胞介素-1(IL-1)的结合、内化或核定位,但对信号转导至关重要。我们之前已定位出一个对IL-1介导的T细胞中白细胞介素-2启动子激活至关重要的50个氨基酸的区域(第477 - 527位氨基酸残基)。该区域在人、小鼠和鸡的IL-1R中显示出显著程度的氨基酸保守性。在此,我们报告hIL-1R胞质结构域的定点突变分析结果。我们在所有三种受体中保守的位置以及非保守位置引入了单氨基酸替换,并确定了信号转导中IL-1R功能的关键氨基酸。在人、小鼠和鸡的IL-1R中保守的三个碱性氨基酸(Arg431、Lys515和Arg518)以及三个芳香族氨基酸(Phe513、Trp514和Tyr519),若不消除IL-1R介导的信号转导就无法被替换。在另一个保守位置(Pro521)的替换显著降低了IL-1R传递IL-1信号的能力。非保守残基可以被替换而不影响信号转导。IL-1R的胞质结构域与果蝇Toll蛋白的胞质结构域相关,氨基酸序列的一致性为26%,相似性为43%。显示对IL-1R功能至关重要的氨基酸在Toll蛋白中是保守的。我们的实验数据表明,IL-1R与果蝇Toll蛋白之间的氨基酸序列相似性反映了这两种蛋白之间的功能同源性。