European Molecular Biology Laboratory, Structural Biology Unit, Notkestrasse 85, 22603, Hamburg, Germany.
Sci Rep. 2013;3:2212. doi: 10.1038/srep02212.
The ubiquitin-conjugating enzyme Pex4p together with its binding partner, the peroxisomal membrane protein Pex22p, co-ordinates cysteine-dependent ubiquitination of the cycling receptor protein Pex5p. Unusually for an ubiquitin-conjugating enzyme, Saccharomyces cerevisiae Pex4p can form a disulphide bond between the cysteine residues at positions 105 and 146. We found that mutating the disulphide forming cysteine residues in Pex4p to serines does not disturb the secondary structure of the protein but does reduce the in vitro activity of Pex4p. From the crystal structure of Pex4p C105S, C146S in complex with the soluble domain of Pex22p, we observe a narrowing of the active site cleft, caused by loss of the disulphide bond. This modification of the active site microenvironment is likely to restrict access of ubiquitin to the active site cysteine, modulating Pex4p activity. Finally, based on sequence and structural alignments, we have identified other ubiquitin-conjugating enzymes that may contain disulphide bonds.
泛素连接酶 Pex4p 与其结合伴侣、过氧化物酶体膜蛋白 Pex22p 一起协调循环受体蛋白 Pex5p 的半胱氨酸依赖性泛素化。与其他泛素连接酶不同,酿酒酵母 Pex4p 可以在位置 105 和 146 的半胱氨酸残基之间形成二硫键。我们发现,将 Pex4p 中的形成二硫键的半胱氨酸残基突变为丝氨酸不会干扰蛋白质的二级结构,但会降低 Pex4p 的体外活性。从 Pex4p C105S、C146S 与 Pex22p 可溶性结构域的复合物的晶体结构中,我们观察到活性位点裂缝变窄,这是由于二硫键的缺失所致。这种活性位点微环境的修饰可能会限制泛素进入活性位点半胱氨酸,从而调节 Pex4p 的活性。最后,基于序列和结构比对,我们已经鉴定出其他可能含有二硫键的泛素连接酶。