Blott E J, Bossi G, Clark R, Zvelebil M, Griffiths G M
Sir William Dunn School of Pathology, Oxford University, South Parks Rd, Oxford, OX1 3RE, UK.
J Cell Sci. 2001 Jul;114(Pt 13):2405-16. doi: 10.1242/jcs.114.13.2405.
Fas ligand (FasL) induces apoptosis through its cell surface receptor Fas. T lymphocytes and natural killer cells sort newly synthesised FasL to secretory lysosomes but, in cell types with conventional lysosomes, FasL appears directly on the plasma membrane. Here, we define a proline-rich domain (PRD) in the cytoplasmic tail of FasL that is responsible for sorting FasL to secretory lysosomes. Deletion of this PRD results in cell surface expression of FasL in cells with secretory lysosomes. Positively charged residues flanking the PRD are crucial to the sorting motif and changing the charge of these residues causes mis-sorting to the plasma membrane. In cells with conventional lysosomes, this motif is not recognised and FasL is expressed at the plasma membrane. The FasL PRD is not required for endocytosis in any cell type, as deletion mutants lacking this motif are endocytosed efficiently to the lysosomal compartment. Endogenous FasL cannot internalise extracellular antibody, demonstrating that FasL does not transit the plasma membrane en route to the secretory lysosomes. We propose that an interaction of the PRD of FasL with an SH3-domain-containing protein, enables direct sorting of FasL from the Golgi to secretory lysosomes.
Fas配体(FasL)通过其细胞表面受体Fas诱导细胞凋亡。T淋巴细胞和自然杀伤细胞将新合成的FasL分选到分泌性溶酶体中,但在具有常规溶酶体的细胞类型中,FasL直接出现在质膜上。在这里,我们在FasL的胞质尾部定义了一个富含脯氨酸的结构域(PRD),该结构域负责将FasL分选到分泌性溶酶体中。删除这个PRD会导致FasL在具有分泌性溶酶体的细胞中在细胞表面表达。PRD两侧带正电荷的残基对于分选基序至关重要,改变这些残基的电荷会导致错误分选到质膜。在具有常规溶酶体的细胞中,这个基序不被识别,FasL在质膜上表达。FasL的PRD在任何细胞类型的内吞作用中都不是必需的,因为缺乏这个基序的缺失突变体能够有效地被内吞到溶酶体区室。内源性FasL不能内化细胞外抗体,这表明FasL在前往分泌性溶酶体的途中不会穿过质膜。我们提出FasL的PRD与一种含SH3结构域的蛋白质的相互作用能够使FasL从高尔基体直接分选到分泌性溶酶体。