| Literature DB >> 27822186 |
Ryoichi Fujiwara1, Tsuyoshi Yokoi2, Miki Nakajima3.
Abstract
Mammalian UDP-glucuronosyltransferases (UGTs) catalyze the transfer of glucuronic acid from UDP-glucuronic acid to various xenobiotics and endobiotics. Since UGTs comprise rate-limiting enzymes for metabolism of various compounds, co-administration of UGT-inhibiting drugs and genetic deficiency of UGT genes can cause an increased blood concentration of these compounds. During the last few decades, extensive efforts have been made to advance the understanding of gene structure, function, substrate specificity, and inhibition/induction properties of UGTs. However, molecular mechanisms and physiological importance of the oligomerization and protein-protein interactions of UGTs are still largely unknown. While three-dimensional structures of human UGTs can be useful to reveal the details of oligomerization and protein-protein interactions of UGTs, little is known about the protein structures of human UGTs due to the difficulty in solving crystal structures of membrane-bound proteins. Meanwhile, soluble forms of plant and bacterial UGTs as well as a partial domain of human UGT2B7 have been crystallized and enabled us to predict three-dimensional structures of human UGTs using a homology-modeling technique. The homology-modeled structures of human UGTs do not only provide the detailed information about substrate binding or substrate specificity in human UGTs, but also contribute with unique knowledge on oligomerization and protein-protein interactions of UGTs. Furthermore, various in vitro approaches indicate that UGT-mediated glucuronidation is involved in cell death, apoptosis, and oxidative stress as well. In the present review article, recent understandings of UGT protein structures as well as physiological importance of the oligomerization and protein-protein interactions of human UGTs are discussed.Entities:
Keywords: UDP-glucuronosyltransferase (UGT); drug-metabolizing enzymes; glucuronidation; glucuronides; protein–protein interactions
Year: 2016 PMID: 27822186 PMCID: PMC5075577 DOI: 10.3389/fphar.2016.00388
Source DB: PubMed Journal: Front Pharmacol ISSN: 1663-9812 Impact factor: 5.810
Homology modeled human UDP-glucuronosyltransferases (UGTs) and their template structures.
| Modeled UGT | Template | Template PDB ID | Reference |
|---|---|---|---|
| UGT1A1 | 2ACV | ||
| UGT1A1 | 2ACV | ||
| UGT1A1 | 2VCE | ||
| 1IIR | |||
| 2IYA | |||
| 2O6L | |||
| UGT1A1 | 2VCE | ||
| 2IYA | |||
| 2C1X | |||
| UGT1A3 | 2PQ6 | ||
| 2C1X | |||
| 3HBF | |||
| UGT1A3 | 2IYA | ||
| 2C1X | |||
| 2VCE | |||
| UGT1A3 | 2C1Z | ||
| UGT1A8 and UGT1A9 | 1PN3 | ||
| UGT1A9 | 2C1Z | ||
| UGT1A9 | 2C1Z | ||
| 2O6L | |||
| UGT1A9 and UGT1A10 | 2IYA | ||
| 2P6P | |||
| 2ACV | |||
| 2O6L | |||
| UGT1A10 | 1XEL | ||
| UGT2B7 | 2C1X, 2C1Z, 2C9Z | ||
| 2ACV, 2ACW | |||
| 2O6L | |||
| UGT2B7 | 2IYA | ||
| 2PQ6 | |||
| C-terminal domains of UGT1, UGT2A1/2A2, UGT2A3, UGT2B4, UGT2B10, UGT2B11, UGT2B15, UGT2B17, UGT2B28 | 2O6L |