Gommel D, Orci L, Emig E M, Hannah M J, Ravazzola M, Nickel W, Helms J B, Wieland F T, Sohn K
Biochemie-Zentrum, Heidelberg, University of Heidelberg, Germany.
FEBS Lett. 1999 Mar 26;447(2-3):179-85. doi: 10.1016/s0014-5793(99)00246-x.
COPI-coated vesicles that bud off the Golgi complex contain two major transmembrane proteins, p23 and p24. We have localized the protein at the Golgi complex and at COPI-coated vesicles. Transport from the intermediate compartment (IC) to the Golgi can be blocked at 15 degrees C, and under these conditions p24 accumulates in peripheral punctated structures identified as IC. Release from the temperature block leads to a redistribution of p24 to the Golgi, showing that p24, similar to p23, cycles between the IC and Golgi complex. Immunoprecipitations of p24 from cell lysates and from detergent-solubilized Golgi membranes and COPI-coated vesicles show that p24 and p23 interact with each other to form a complex. Transient transfection of p23 in HeLa cells shows that p23 and p24 colocalize in structures induced by the overexpression of p23. Taken together p24 interacts with p23 and constitutively cycles between the organelles of the early secretory pathway.
从高尔基体复合体上出芽的COP I被膜小泡含有两种主要的跨膜蛋白,即p23和p24。我们已将该蛋白定位在高尔基体复合体和COP I被膜小泡上。从中间区室(IC)到高尔基体的运输在15℃时会被阻断,在这些条件下,p24会积聚在被鉴定为IC的周边点状结构中。温度阻断解除后,p24会重新分布到高尔基体,这表明p24与p23类似,在IC和高尔基体复合体之间循环。从细胞裂解物、去污剂溶解的高尔基体膜和COP I被膜小泡中对p24进行免疫沉淀,结果表明p24和p23相互作用形成复合物。在HeLa细胞中瞬时转染p23表明,p23和p24在p23过表达诱导形成的结构中共定位。综上所述,p24与p23相互作用,并在早期分泌途径的细胞器之间持续循环。