Ikonomov Ognian C, Sbrissa Diego, Foti Michelangelo, Carpentier Jean-Louis, Shisheva Assia
Department of Physiology, Wayne State University School of Medicine, Detroit, Michigan 48201, USA.
Mol Biol Cell. 2003 Nov;14(11):4581-91. doi: 10.1091/mbc.e03-04-0222. Epub 2003 Aug 7.
The mammalian phosphatidylinositol (PtdIns) 5-P/PtdIns 3,5-P2-producing kinase PIKfyve has been implicated in maintaining endomembrane homeostasis in mammalian cells. To address the role of PIKfyve in trafficking processes, we examined the functioning of the biosynthetic, endocytic, and recycling pathways in stable human embryonic kidney 293 cell lines inducibly expressing the wild-type or kinase-defective dominant-negative form. PIKfyveWT or PIKfyveK1831E expression did not affect the processing and lysosomal targeting of newly synthesized procathepsin D. Likewise the rates of transferrin uptake/recycling or epidermal growth factor receptor degradation were not altered upon expression of either protein. In contrast, PIKfyveK1831E but not PIKfyveWT expression markedly impaired the late uptake of fluid phase marker horseradish peroxidase. Inspection of the organelle morphology by confocal microscopy with specific markers in COS cells transiently expressing PIKfyveK1831E showed the Golgi apparatus, end lysosomes, and the recycling compartment indistinguishable from nontransfected cells, despite the dramatic PIKfyveK1831E-induced endomembrane vacuolation. In contrast, we observed a striking effect on the late endocytic compartment, marked by disruption of the dextran-labeled perinuclear endosomal compartment and formation of dispersed enlarged vesicles. Electron microscopy identified the cytoplasmic vacuoles in the PIKfyveK1831E-expressing human embryonic kidney 293 cells as enlarged multivesicular body-like structures with substantially lower number of internal vesicles and membrane whorls. Together, these data indicate that PIKfyve selectively regulates the sorting and traffic of peripheral endosomes containing lysosomaly directed fluid phase cargo through controlling the morphogenesis and function of multivesicular bodies.
哺乳动物磷脂酰肌醇(PtdIns)5 - 磷酸/磷脂酰肌醇3,5 - 二磷酸生成激酶PIKfyve参与维持哺乳动物细胞内膜稳态。为研究PIKfyve在转运过程中的作用,我们检测了可诱导表达野生型或激酶缺陷型显性负性形式的稳定人胚肾293细胞系中生物合成、内吞和再循环途径的功能。PIKfyveWT或PIKfyveK1831E的表达不影响新合成的组织蛋白酶D的加工和溶酶体靶向。同样,转铁蛋白摄取/再循环率或表皮生长因子受体降解率在两种蛋白表达时均未改变。相反,PIKfyveK1831E而非PIKfyveWT的表达显著损害了液相标记物辣根过氧化物酶的晚期摄取。通过共聚焦显微镜用特异性标记物检查瞬时表达PIKfyveK1831E的COS细胞中的细胞器形态,结果显示高尔基体、晚期溶酶体和再循环区室与未转染细胞无差异,尽管PIKfyveK1831E引起了显著的内膜空泡化。相比之下,我们观察到对晚期内吞区室有显著影响,表现为葡聚糖标记的核周内体区室破坏和分散的扩大囊泡形成。电子显微镜鉴定在表达PIKfyveK1831E的人胚肾293细胞中的细胞质空泡为扩大的多囊泡体样结构,其内部囊泡和膜涡旋数量明显减少。总之,这些数据表明PIKfyve通过控制多囊泡体的形态发生和功能,选择性地调节含有溶酶体定向液相货物的外周内体的分选和运输。