Strieter Eric R, Vaillancourt Frédéric H, Walsh Christopher T
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, 240 Longwood Avenue, Boston, Massachusetts 02115, USA.
Biochemistry. 2007 Jun 26;46(25):7549-57. doi: 10.1021/bi700243h. Epub 2007 May 26.
During the biosynthesis of the cyclopropyl amino acid coronamic acid from l-allo-Ile by the phytotoxic Pseudomonas syringae, the aminoacyl group covalently attached to the pantetheinyl arm of CmaA is shuttled to the HS-pantetheinyl arm of the protein CmaD by the aminoacyltransferase CmaE. CmaE will only recognize deacylated CmaA for initial complexation. The aminoacyl group becomes covalently attached to the active site Cys of CmaE and can then be transferred out to the holo pantetheinylated form of CmaD. Both l-Val/l-[14C]Val exchange studies and MALDI-TOF support a reversible shuttling process. Aminoacylated-S-CmaE will transfer the l-Val moiety to the HS-pantetheinyl arm of other T domains, including CytC2, BarA, and ArfA C2-A2-T2 but not to free HS-pantetheine. CmaD could be loaded with other amino acids, for example, l-Leu and l-Thr, by the action of heterologous donor T domains containing alternative aminoacyl groups. Additionally, CmaE is able to accept l-Phe as a substrate when presented on CmaD and is able to load this aminoacyl moiety onto heterologous T domains, expanding the potential for CmaE to be used as a tool for generating chemical diversity within an NRPS assembly line.
在具有植物毒性的丁香假单胞菌从L-别异亮氨酸生物合成环丙基氨基酸冠菌素酸的过程中,通过氨酰基转移酶CmaE,共价连接到CmaA泛酰巯基乙胺臂上的氨酰基被转移到蛋白质CmaD的HS-泛酰巯基乙胺臂上。CmaE仅识别脱酰基的CmaA进行初始复合。氨酰基共价连接到CmaE的活性位点半胱氨酸上,然后可以转移到全泛酰基化形式的CmaD上。L-缬氨酸/L-[14C]缬氨酸交换研究和基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)均支持一个可逆的穿梭过程。氨酰化的-S-CmaE会将L-缬氨酸部分转移到其他T结构域的HS-泛酰巯基乙胺臂上,包括CytC2、BarA和ArfA C2-A2-T2,但不会转移到游离的HS-泛酰巯基乙胺上。通过含有替代氨酰基的异源供体T结构域的作用,CmaD可以加载其他氨基酸,例如L-亮氨酸和L-苏氨酸。此外,当CmaD上存在L-苯丙氨酸时,CmaE能够将其作为底物接受,并能够将该氨酰基部分加载到异源T结构域上,这扩大了CmaE作为一种工具在非核糖体肽合成酶(NRPS)装配线中产生化学多样性的潜力。