Harty Carol, Römisch Karin
Cambridge Institute for Medical Research, Hills Road, Cambridge CB2 2XY, UK.
BMC Cell Biol. 2013 Mar 11;14:14. doi: 10.1186/1471-2121-14-14.
The split-ubiquitin system monitors interactions of transmembrane proteins in yeast. It is based on the formation of a quasi-native ubiquitin structure upon interaction of two proteins to which the N- and C-terminal halves of ubiquitin have been fused. In the system we use here ubiquitin formation leads to proteolytic cleavage liberating a transcription factor (PLV) from the C-ubiquitin (C) fusion protein which can then activate reporter genes. Generation of fusion proteins is, however, rife with problems, and particularly in transmembrane proteins often disturbs topology, structure and function.
We show that both the Sec61 protein which forms the principal protein translocation channel in the endoplasmic reticulum (ER) membrane, and its non-essential homologue, Ssh1p, when fused C-terminally to CPLV are inactive. In a heterozygous diploid Sec61-CPLV is present in protein translocation channels in the ER membrane without disturbing their function and displays a limited set of protein-protein interactions similar to those found for the wildtype protein using biochemical methods. Although its expression level is similar, Ssh1-CPLV interactions are less strong, and, in contrast to Sec61p, Ssh1p does not distinguish between Sbh1p and Sbh2p. We show that interactions can be monitored by reporter gene activity or directly by PLV cleavage, which is more sensitive, but leads to quantitatively different results.
We conclude that the split-ubiquitin system we used here has high fidelity, but low sensitivity and is of limited use for detection of new, transient interactions with protein translocation channels in the ER membrane.
分裂泛素系统用于监测酵母中跨膜蛋白的相互作用。它基于两个分别融合了泛素N端和C端片段的蛋白相互作用时形成类似天然泛素结构的原理。在我们这里使用的系统中,泛素的形成会导致蛋白水解切割,从而从C端泛素(C)融合蛋白中释放出转录因子(PLV),进而激活报告基因。然而,融合蛋白的产生存在诸多问题,尤其是对于跨膜蛋白,常常会扰乱其拓扑结构、结构和功能。
我们发现,在内质网(ER)膜中形成主要蛋白质转运通道的Sec61蛋白及其非必需同源物Ssh1p,当在C端与CPLV融合时均无活性。在杂合二倍体中,Sec61-CPLV存在于ER膜中的蛋白质转运通道中,不会干扰其功能,并且通过生化方法显示出与野生型蛋白类似的有限的一组蛋白质-蛋白质相互作用。尽管其表达水平相似,但Ssh1-CPLV的相互作用较弱,并且与Sec61p不同,Ssh1p无法区分Sbh1p和Sbh2p。我们表明,可以通过报告基因活性或直接通过PLV切割来监测相互作用,PLV切割更敏感,但会导致定量上不同的结果。
我们得出结论,我们这里使用的分裂泛素系统具有高保真度,但灵敏度低,对于检测与ER膜中蛋白质转运通道的新的瞬时相互作用用途有限。