Gully Djamel, Bouveret Emmanuelle
LISM, IBSM, CNRS, 31 chemin Joseph Aiguier, 13402 Marseille, France.
Proteomics. 2006 Jan;6(1):282-93. doi: 10.1002/pmic.200500115.
In prokaryotes, acyl carrier protein (ACP) is a cofactor central to a myriad of syntheses, including fatty acid and phospholipid synthesis. To fulfill its function, ACP must therefore interact with a multitude of different enzymes, which includes the thioesterase YbgC. We found a specific interaction between ACP and YbgC whose thioesterase activity has been demonstrated in vitro on acyl-CoA derivatives, but whose physiological function in bacteria remains unknown. Therefore, YbgC could be a thioesterase active on some specific acyl-ACPs. We then assigned a function to the ACP/YbgC pair by employing a proteomic approach derived from tandem affinity purification, the split tag method. This technique allowed us to purify proteins interacting with ACP and YbgC proteins at the same time. Interactions with PlsB, a sn-glycerol-3-phosphate acyltransferase and PssA, a phosphatidylserine synthase, were identified and validated, showing that YbgC is involved in phospholipid metabolism. Furthermore, using an in vivo bacterial two-hybrid interaction analysis, we showed for the first time that enzymes of the phospholipid synthesis pathway form a complex in the inner membrane. Taken together, these results describe an integrated protein network that could be involved in the coordination of phospholipid metabolism.
在原核生物中,酰基载体蛋白(ACP)是众多合成过程的核心辅因子,包括脂肪酸和磷脂的合成。因此,为履行其功能,ACP必须与多种不同的酶相互作用,其中包括硫酯酶YbgC。我们发现ACP与YbgC之间存在特异性相互作用,YbgC的硫酯酶活性已在体外针对酰基辅酶A衍生物得到证实,但其在细菌中的生理功能仍然未知。因此,YbgC可能是一种对某些特定酰基 - ACP具有活性的硫酯酶。然后,我们通过采用源自串联亲和纯化的蛋白质组学方法——分裂标签法,赋予了ACP/YbgC这一对蛋白一个功能。这项技术使我们能够同时纯化与ACP和YbgC蛋白相互作用的蛋白质。我们鉴定并验证了与磷脂酰甘油 - 3 - 磷酸酰基转移酶PlsB和磷脂酰丝氨酸合酶PssA的相互作用,表明YbgC参与磷脂代谢。此外,通过体内细菌双杂交相互作用分析,我们首次表明磷脂合成途径的酶在内膜中形成复合物。综上所述,这些结果描述了一个可能参与磷脂代谢协调的整合蛋白网络。