Grechkin Alexander N, Mukhtarova Lucia S, Latypova Larisa R, Gogolev Yuri, Toporkova Yana Y, Hamberg Mats
Kazan Institute of Biochemistry and Biophysics, Russian Academy of Sciences, Kazan, Russia.
Chembiochem. 2008 Oct 13;9(15):2498-505. doi: 10.1002/cbic.200800331.
The mechanism of the recombinant tomato allene oxide synthase (LeAOS3, CYP74C3) was studied. Incubations of linoleic acid (9S)-hydroperoxide with dilute suspensions of LeAOS3 (10-20 s, 0 degrees C) yield mostly the expected allene oxide (12Z)-9,10-epoxy-10,12-octadecadienoic acid (9,10-EOD), which was detected as its methanol-trapping product. In contrast, the relative yield of 9,10-EOD progressively decreased when the incubations were performed with fourfold, tenfold, or 80-fold larger amounts of LeAOS3, while alpha-ketol and the cyclopentenone rac-cis-10-oxo-11-phytoenoic acid (10-oxo-PEA) became the predominant products. Both the alpha-ketol and 10-oxo-PEA were also produced when LeAOS3 was exposed to preformed 9,10-EOD, which was generated by maize allene oxide synthase (CYP74A). LeAOS3 also converted linoleic acid (13S)-hydroperoxide into the corresponding allene oxide, but with about tenfold lower yield of cyclopentenone. The results indicate that in contrast to the ordinary allene oxide synthases (CYP74A subfamily), LeAOS3 (CYP74C subfamily) is a multifunctional enzyme, catalyzing not only the synthesis, but also the hydrolysis and cyclization of allene oxide.
对重组番茄丙二烯氧化物合酶(LeAOS3,CYP74C3)的作用机制进行了研究。将亚油酸(9S)-氢过氧化物与LeAOS3的稀悬浮液在0℃下孵育10 - 20秒,主要生成预期的丙二烯氧化物(12Z)-9,10-环氧-10,12-十八碳二烯酸(9,10-EOD),其作为甲醇捕获产物被检测到。相比之下,当使用四倍、十倍或八十倍量的LeAOS3进行孵育时,9,10-EOD的相对产率逐渐降低,而α-酮醇和环戊烯酮外消旋-顺式-10-氧代-11-植二烯酸(10-氧代-PEA)成为主要产物。当LeAOS3与由玉米丙二烯氧化物合酶(CYP74A)生成的预先形成的9,10-EOD接触时,也会产生α-酮醇和10-氧代-PEA。LeAOS3还将亚油酸(13S)-氢过氧化物转化为相应的丙二烯氧化物,但环戊烯酮的产率约低十倍。结果表明,与普通的丙二烯氧化物合酶(CYP74A亚家族)不同,LeAOS3(CYP74C亚家族)是一种多功能酶,不仅催化丙二烯氧化物的合成,还催化其水解和环化。