Regio- and Stereoselective Steroid Hydroxylation at C7 by Cytochrome P450 Monooxygenase Mutants.
Aitao LiCarlos G Acevedo-RochaLorenzo D'AmoreJinfeng ChenYaqin PengMarc Garcia-BorràsChenghua GaoJinmei ZhuHarry RickerbySílvia OsunaJiahai ZhouManfred T ReetzPublished in: Angewandte Chemie (International ed. in English) (2020)
Steroidal C7β alcohols and their respective esters have shown significant promise as neuroprotective and anti-inflammatory agents to treat chronic neuronal damage like stroke, brain trauma, and cerebral ischemia. Since C7 is spatially far away from any functional groups that could direct C-H activation, these transformations are not readily accessible using modern synthetic organic techniques. Reported here are P450-BM3 mutants that catalyze the oxidative hydroxylation of six different steroids with pronounced C7 regioselectivities and β stereoselectivities, as well as high activities. These challenging transformations were achieved by a focused mutagenesis strategy and application of a novel technology for protein library construction based on DNA assembly and USER (Uracil-Specific Excision Reagent) cloning. Upscaling reactions enabled the purification of the respective steroidal alcohols in moderate to excellent yields. The high-resolution X-ray structure and molecular dynamics simulations of the best mutant unveil the origin of regio- and stereoselectivity.
Keyphrases
- cerebral ischemia
- molecular dynamics simulations
- high resolution
- anti inflammatory drugs
- wild type
- anti inflammatory
- subarachnoid hemorrhage
- blood brain barrier
- brain injury
- molecular docking
- crispr cas
- circulating tumor
- mass spectrometry
- high intensity
- cell free
- single molecule
- big data
- protein protein
- amino acid
- atrial fibrillation
- dual energy
- water soluble
- trauma patients
- small molecule
- multiple sclerosis
- magnetic resonance imaging
- white matter
- artificial intelligence
- high density