Pharmacogenomics Laboratory, Centre Hospitalier Universitaire de Québec (CHUQ) Research Center, 2705 Boul. Laurier, Québec, Canada, G1V 4G2, and Faculty of Pharmacy, Laval University, Pavillon Ferdinand-Vandry, Université Laval, Québec, Canada, G1V 0A6.
Biochem J. 2013 Feb 15;450(1):107-14. doi: 10.1042/BJ20121594.
The oligomerization of UGTs [UDP (uridine diphosphate)-glucuronosyltransferases] modulates their enzyme activities. Recent findings also indicate that glucuronidation is negatively regulated by the formation of inactive oligomeric complexes between UGT1A enzymes [i1 (isoform 1)] and an enzymatically inactive alternatively spliced i2 (isoform 2). In the present paper, we assessed whether deletion of the UGT-interacting domains previously reported to be critical for enzyme function might be involved in i1-i2 interactions. The bilirubin-conjugating UGT1A1 was used as a prototype. We also explored whether intermolecular disulfide bonds are involved in i1-i2 interactions and the potential role of selected cysteine residues. Co-immunoprecipitation assays showed that UGT1A1 lacking the SP (signal peptide) alone or also lacking the transmembrane domain (absent from i2) did not self-interact, but still interacted with i2. The deletion of other N- or C-terminal domains did not compromise i1-i2 complex formation. Under non-reducing conditions, we also observed formation of HMWCs (high-molecular-mass complexes) for cells overexpressing i1 and i2. The presence of UGTs in these complexes was confirmed by MS. Mutation of individual cysteine residues throughout UGT1A1 did not compromise i1-i1 or i1-i2 complex formation. These findings are compatible with the hypothesis that the interaction between i1 and i2 proteins (either transient or stable) involves binding of more than one domain that probably differs from those involved in i1-i1 interactions.
UGTs [UDP(尿苷二磷酸)-葡萄糖醛酸基转移酶] 的寡聚化调节其酶活性。最近的研究结果还表明,葡萄糖醛酸化受到 UGT1A 酶 [i1(同工型 1)] 和酶活性无的异剪接 i2(同工型 2)之间形成无活性寡聚复合物的负调控。在本文中,我们评估了先前报道的对于酶功能至关重要的 UGT 相互作用域的缺失是否可能参与 i1-i2 相互作用。胆红素结合的 UGT1A1 被用作原型。我们还探讨了分子间二硫键是否参与 i1-i2 相互作用以及选定半胱氨酸残基的潜在作用。共免疫沉淀分析表明,单独缺乏 SP(信号肽)或也缺乏跨膜域(i2 中不存在)的 UGT1A1 不自我相互作用,但仍与 i2 相互作用。其他 N 或 C 末端结构域的缺失不影响 i1-i2 复合物的形成。在非还原条件下,我们还观察到过度表达 i1 和 i2 的细胞形成 HMWC(高分子量复合物)。通过 MS 证实了这些复合物中存在 UGTs。UGT1A1 中单个半胱氨酸残基的突变不影响 i1-i1 或 i1-i2 复合物的形成。这些发现与以下假说一致,即 i1 和 i2 蛋白之间的相互作用(无论是瞬时的还是稳定的)涉及与参与 i1-i1 相互作用的那些不同的一个以上结构域的结合。