AbstractBioinformatics analyses enabled us to identify the hypothetical determinants of catalysis by CYP74 family enzymes. To examine their recognition, two mutant forms F295I and S297A of tomato allene oxide synthase LeAOS3 (CYP74C3) were prepared by site-directed mutagenesis. Both mutations dramatically altered the enzyme catalysis. Both mutant forms possessed the activity of hydroperoxide lyase, while the allene oxide synthase activity was either not detectable (F295I) or significantly reduced (S297A) compared to the wild-type LeAOS3. Thus, both sites 295 and 297 localized within the “I-helix central domain” (“oxygen binding domain”) are the primary determinants of CYP74 type of catalysis
Fig. 5. GC-MS analyses of products (Me/TMS) of 9(S)-HPOD conversions by recombinant WT ZmAOS1 (А), P...
Fig. 2. Structural formulae of reaction products of target WT enzymes and their mutant forms. 1, col...
Although oxidosqualene cyclase reaction mechanisms have been established, how these enzymes promote ...
AbstractNon-classical P450s of CYP74 family control several enzymatic conversions of fatty acid hydr...
Toporkova, Yana Y., Smirnova, Elena O., Mukhtarova, Lucia S., Gorina, Svetlana S., Grechkin, Alexand...
Fig. 1. Multiple alignments of partial sequences of following CYP74s: The multiple alignment of diff...
Fig. 6. The mechanism of fatty acid hydroperoxide conversion by CYP74 proteins showing the role of t...
Fig. 1. Multiple alignments of I-helix sequences of following CYP74s: As, Allium sativum; AsDES, CAI...
Fig. 2. Structural formulae of reaction products (Me/ TMS) of target WT enzymes and their mutant for...
Two highly identical fusion proteins, an allene oxide synthase-lipoxygenase (AOS-LOX) and a hydroper...
Fig. 3. Products (Me/TMS) of 9(S)-HPOD (A and B) and 13(S)-HPOD (C and D) conversions by recombinant...
Fig. 4. GC-MS analyses of products (Me/TMS) of 9(S)-HPOT conversions by recombinant WT ZmAOS1 (А), P...
Toporkova, Yana Y., Smirnova, Elena O., Iljina, Tatiana M., Mukhtarova, Lucia S., Gorina, Svetlana S...
Fig. 7. The scheme of catalytic mechanisms of the CYP74L enzymes.Published as part of Toporkova, Yan...
The product specificity and mechanistic peculiarities of two allene oxide synthases, tomato LeAOS3 (...
Fig. 5. GC-MS analyses of products (Me/TMS) of 9(S)-HPOD conversions by recombinant WT ZmAOS1 (А), P...
Fig. 2. Structural formulae of reaction products of target WT enzymes and their mutant forms. 1, col...
Although oxidosqualene cyclase reaction mechanisms have been established, how these enzymes promote ...
AbstractNon-classical P450s of CYP74 family control several enzymatic conversions of fatty acid hydr...
Toporkova, Yana Y., Smirnova, Elena O., Mukhtarova, Lucia S., Gorina, Svetlana S., Grechkin, Alexand...
Fig. 1. Multiple alignments of partial sequences of following CYP74s: The multiple alignment of diff...
Fig. 6. The mechanism of fatty acid hydroperoxide conversion by CYP74 proteins showing the role of t...
Fig. 1. Multiple alignments of I-helix sequences of following CYP74s: As, Allium sativum; AsDES, CAI...
Fig. 2. Structural formulae of reaction products (Me/ TMS) of target WT enzymes and their mutant for...
Two highly identical fusion proteins, an allene oxide synthase-lipoxygenase (AOS-LOX) and a hydroper...
Fig. 3. Products (Me/TMS) of 9(S)-HPOD (A and B) and 13(S)-HPOD (C and D) conversions by recombinant...
Fig. 4. GC-MS analyses of products (Me/TMS) of 9(S)-HPOT conversions by recombinant WT ZmAOS1 (А), P...
Toporkova, Yana Y., Smirnova, Elena O., Iljina, Tatiana M., Mukhtarova, Lucia S., Gorina, Svetlana S...
Fig. 7. The scheme of catalytic mechanisms of the CYP74L enzymes.Published as part of Toporkova, Yan...
The product specificity and mechanistic peculiarities of two allene oxide synthases, tomato LeAOS3 (...
Fig. 5. GC-MS analyses of products (Me/TMS) of 9(S)-HPOD conversions by recombinant WT ZmAOS1 (А), P...
Fig. 2. Structural formulae of reaction products of target WT enzymes and their mutant forms. 1, col...
Although oxidosqualene cyclase reaction mechanisms have been established, how these enzymes promote ...