Park J G, Schreiber A D
University of Pennsylvania School of Medicine, Philadelphia 19104, USA.
Proc Natl Acad Sci U S A. 1995 Aug 1;92(16):7381-5. doi: 10.1073/pnas.92.16.7381.
The Fc gamma receptor-associated gamma and zeta subunits contain a conserved cytoplasmic motif, termed the immunoglobulin gene tyrosine activation motif, which contains a pair of YXXL sequences. The tyrosine residues within these YXXL sequences have been shown to be required for transduction of a phagocytic signal. We have previously reported that the gamma subunit of the type IIIA Fc gamma receptor (Fc gamma RIIIA) is approximately 6 times more efficient in mediating phagocytosis than the zeta subunit of Fc gamma RIIIA. By exchanging regions of the cytoplasmic domains of the homologous gamma and zeta chains, we observed that the cytoplasmic area of the gamma chain bearing a pair of the conserved YXXL sequences is important in phagocytic signaling. Further specificity of phagocytic signaling is largely determined by the two internal XX amino acids in the YXXL sequences. In contrast, the flanking amino acids of the YXXL sequences including the seven intervening amino acids between the two YXXL sequences do not significantly affect the phagocytic signal. Furthermore, the protein-tyrosine kinase Syk, but not the related kinase ZAP-70, stimulated Fc gamma RIIIA-mediated phagocytosis. ZAP-70, however, increased phagocytosis when coexpressed with the Src family kinase Fyn. These data demonstrate the importance of the two specific amino acids within the gamma subunit YXXL cytoplasmic sequences in phagocytic signaling and explain the difference in phagocytic efficiency of the gamma and zeta chains. These results indicate the importance of Syk in Fc gamma RIIIA-mediated phagocytosis and demonstrate that ZAP-70 and syk differ in their requirement for a Src-related kinase in signal transduction.
Fcγ受体相关的γ和ζ亚基含有一个保守的胞质基序,称为免疫球蛋白基因酪氨酸激活基序,其中包含一对YXXL序列。这些YXXL序列中的酪氨酸残基已被证明是吞噬信号转导所必需的。我们先前曾报道,IIIA型Fcγ受体(FcγRIIIA)的γ亚基在介导吞噬作用方面比FcγRIIIA的ζ亚基效率高约6倍。通过交换同源γ和ζ链胞质结构域的区域,我们观察到带有一对保守YXXL序列的γ链胞质区域在吞噬信号传导中很重要。吞噬信号传导的进一步特异性很大程度上由YXXL序列中的两个内部XX氨基酸决定。相比之下,YXXL序列的侧翼氨基酸,包括两个YXXL序列之间的七个间隔氨基酸,对吞噬信号没有显著影响。此外,蛋白酪氨酸激酶Syk而非相关激酶ZAP-70刺激FcγRIIIA介导的吞噬作用。然而,当与Src家族激酶Fyn共表达时,ZAP-70增加了吞噬作用。这些数据证明了γ亚基YXXL胞质序列中两个特定氨基酸在吞噬信号传导中的重要性,并解释了γ和ζ链吞噬效率的差异。这些结果表明Syk在FcγRIIIA介导的吞噬作用中的重要性,并证明ZAP-70和Syk在信号转导中对Src相关激酶的需求不同。