Benoni Roberto, De Bei Omar, Paredi Gianluca, Hayes Christopher S, Franko Nina, Mozzarelli Andrea, Bettati Stefano, Campanini Barbara
Dipartimento di Medicina e Chirurgia, Università di Parma, Italy.
Dipartimento di Scienze degli Alimenti e del Farmaco, Università di Parma, Italy.
FEBS Lett. 2017 May;591(9):1212-1224. doi: 10.1002/1873-3468.12630. Epub 2017 Apr 17.
In bacteria and plants, serine acetyltransferase (CysE) and O-acetylserine sulfhydrylase-A sulfhydrylase (CysK) collaborate to synthesize l-Cys from l-Ser. CysE and CysK bind one another with high affinity to form the cysteine synthase complex (CSC). We demonstrate that bacterial CysE is activated when bound to CysK. CysE activation results from the release of substrate inhibition, with the K for l-Ser increasing from 4 mm for free CysE to 16 mm for the CSC. Feedback inhibition of CysE by l-Cys is also relieved in the bacterial CSC. These findings suggest that the CysE active site is allosterically altered by CysK to alleviate substrate and feedback inhibition in the context of the CSC.
在细菌和植物中,丝氨酸乙酰基转移酶(CysE)和O - 乙酰丝氨酸巯基化酶 - A巯基化酶(CysK)协同作用,从L - 丝氨酸合成L - 半胱氨酸。CysE和CysK以高亲和力相互结合,形成半胱氨酸合酶复合物(CSC)。我们证明,细菌CysE与CysK结合时会被激活。CysE的激活源于底物抑制的解除,L - 丝氨酸的K值从游离CysE的4 mM增加到CSC的16 mM。在细菌CSC中,L - 半胱氨酸对CysE的反馈抑制也得到缓解。这些发现表明,CysK会变构改变CysE的活性位点,以缓解CSC环境中的底物抑制和反馈抑制。