Dunlop J, Jones P C, Finbow M E
CRC Beatson Laboratories, Beatson Institute for Cancer Research, Bearsden, Glasgow, UK.
EMBO J. 1995 Aug 1;14(15):3609-16. doi: 10.1002/j.1460-2075.1995.tb00030.x.
Ductin is a highly conserved and polytopic transmembrane protein which is the subunit c component of the vacuolar H(+)-ATPase (V-ATPase) and a component of a connexon channel of gap junctions. Previous studies have suggested that ductin in the V-ATPase has the opposite orientation of ductin in a connexon. Using an in vitro translation system coupled to microsomes derived from the endoplasmic reticulum, we show that ductin is co-translationally inserted into the membrane bilayer, suggesting a dependency on the signal recognition particle for synthesis. By attaching a C-terminal polypeptide derived from beta-lactamase and by using cysteine replacement coupled to chemical labelling, we show that ductin is inserted into the microsomal membrane in both orientations in similar proportions. In contrast, squid rhodopsin appears to be inserted in a single orientation. Changing conserved charged residues at the N-terminus of ductin does not affect the ratio of the two orientations. Once in the microsomal membrane, ductin assembles into an oligomeric complex which contains a pore accessible to a water-soluble probe, reminiscent of the ductin complex found in the V-ATPase and a connexon.
导管蛋白是一种高度保守的多跨膜蛋白,它是液泡H(+)-ATP酶(V-ATP酶)的亚基c成分,也是间隙连接连接子通道的一个成分。先前的研究表明,V-ATP酶中的导管蛋白与连接子中的导管蛋白方向相反。利用与源自内质网的微粒体偶联的体外翻译系统,我们发现导管蛋白是共翻译插入到膜双层中的,这表明其合成依赖于信号识别颗粒。通过连接源自β-内酰胺酶的C末端多肽,并利用与化学标记偶联的半胱氨酸替换,我们发现导管蛋白以相似比例以两种方向插入微粒体膜中。相比之下,鱿鱼视紫红质似乎以单一方向插入。改变导管蛋白N末端的保守带电残基不会影响两种方向的比例。一旦进入微粒体膜,导管蛋白就会组装成一个寡聚复合体,该复合体包含一个对水溶性探针可及的孔,这让人联想到在V-ATP酶和连接子中发现的导管蛋白复合体。