Sjekloća Ljiljana, Ferré-D'Amaré Adrian R
Biochemistry and Biophysics Center, National Heart, Lung and Blood Institute, 50 South Drive, Bethesda, Maryland, 20892-8012, United States.
Current affiliation: Molecular Pathology, International Centre for Genetic Engineering and Biotechnology, Padriciano 99, Trieste 34149, Italy.
MicroPubl Biol. 2022 Jun 8;2022. doi: 10.17912/micropub.biology.000570. eCollection 2022.
The S-adenosyl-L-methionine-dependent tRNA 4-demethylwyosine synthase TYW1 catalyzes biosynthesis of 4-demethylwyosine (imG-14), the precursor for wyosine, the hypermodified guanine-derived nucleotide present at position 37 of phenylalanine tRNAs of archaea and eukarya. Eukaryotic TYW1 enzymes contain N-terminal flavodoxin-like and C-terminal radical-SAM domains. We determined co-crystal structures of the flavodoxin-like domain of the putative Tyw1 from in complex with flavin mononucleotide (FMN), exploiting an unexpected anomalous scatterer present in the recombinant protein. Our results show how eukaryotic TYW1 enzymes bind the coenzyme FMN and will help further elucidation of the structural enzymology of 4-demethylwyosine synthesis.
依赖S-腺苷-L-甲硫氨酸的tRNA 4-去甲基怀俄苷合酶TYW1催化4-去甲基怀俄苷(imG-14)的生物合成,4-去甲基怀俄苷是怀俄苷的前体,怀俄苷是一种超修饰的鸟嘌呤衍生核苷酸,存在于古细菌和真核生物苯丙氨酸tRNA的第37位。真核生物的TYW1酶含有N端类黄素氧还蛋白结构域和C端自由基-SAM结构域。我们利用重组蛋白中存在的一个意外的反常散射体,确定了来自[具体来源未给出]的假定Tyw1的类黄素氧还蛋白结构域与黄素单核苷酸(FMN)复合物的共晶体结构。我们的结果展示了真核生物TYW1酶如何结合辅酶FMN,并将有助于进一步阐明4-去甲基怀俄苷合成的结构酶学。