Urade Reiko, Okudo Hirokazu, Kato Hiroyuki, Moriyama Tatsuya, Arakaki Yukino
Graduate School of Agriculture, Kyoto University, Uji, Kyoto 611-0011, Japan.
Biochemistry. 2004 Jul 13;43(27):8858-68. doi: 10.1021/bi0493315.
ER-60 is a thiol oxidoreductase family protein of the endoplasmic reticulum that facilitates the oxidative folding of glycoproteins via interaction with calnexin (CNX) and calreticulin (CRT). In this study, we tried to identify the site of interaction with CNX and CRT in the ER-60 molecule. ER-60 was shown to be composed of at least four domains, named a, b, b', and a', by limited proteolysis. Recombinant fragments of ER-60, a, b', and a'c, were each expressed in Escherichia coli as an individual soluble folded protein that underwent a cooperative unfolding transition along a urea gradient. These fragments each gave the circular dichroism (CD) spectrum of the folded protein. On the other hand, fragment b, which did not undergo the cooperative unfolding transition along a urea gradient gel, did not show any sign of the folded structure on the CD measurement. However, subtraction of the spectra showed that the b domain was folded in wild-type ER-60 or abb'. Both a and a'c, which have a catalytic center CGHC motif, showed activity almost equivalent to half of that of wild-type ER-60. Extension from a or a'c to ab and abb' or b'a'c had little effect on their isomerase activity, suggesting that the b and b' domains hardly contribute to the catalytic activity of ER-60. The contribution of both the b and b' domains to the binding with CNX and CRT was revealed by surface plasmon resonance analysis and oxidative-refolding experiments of monoglucosylated RNase B with addition of the luminal domain of CNX.
ER-60是内质网中的一种硫醇氧化还原酶家族蛋白,它通过与钙联蛋白(CNX)和钙网蛋白(CRT)相互作用促进糖蛋白的氧化折叠。在本研究中,我们试图确定ER-60分子中与CNX和CRT相互作用的位点。通过有限蛋白酶解显示,ER-60至少由四个结构域组成,分别命名为a、b、b'和a'。ER-60的重组片段a、b'和a'c分别在大肠杆菌中表达为单个可溶性折叠蛋白,它们沿着尿素梯度经历协同解折叠转变。这些片段各自给出了折叠蛋白的圆二色性(CD)光谱。另一方面,片段b在尿素梯度凝胶上未经历协同解折叠转变,在CD测量中未显示出任何折叠结构的迹象。然而,光谱相减显示b结构域在野生型ER-60或abb'中是折叠的。具有催化中心CGHC基序的a和a'c都显示出几乎相当于野生型ER-60一半的活性。从a或a'c延伸到ab和abb'或b'a'c对它们的异构酶活性影响很小,这表明b和b'结构域对ER-60的催化活性几乎没有贡献。通过表面等离子体共振分析以及添加CNX腔结构域的单葡萄糖基化核糖核酸酶B的氧化重折叠实验,揭示了b和b'结构域对与CNX和CRT结合的贡献。