Thomas Iain, Martin Christine J, Wilkinson Christopher J, Staunton James, Leadlay Peter F
Cambridge Centre for Molecular Recognition and Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, CB2 1GA, Cambridge, United Kingdom.
Chem Biol. 2002 Jul;9(7):781-7. doi: 10.1016/s1074-5521(02)00164-3.
A tetraketide synthase containing a loading module (LM), the extension modules erythromycin module 1, rapamycin module 2, and erythromycin module 2 (LM-Ery1-Rap2-Ery2-TE), when expressed in Saccharopolyspora erythraea strain JC2, produced as previously reported a mixture of tetraketide lactones (minor products) and triketide lactones (major products). Several alternative plausible mechanisms by which this "skipping" phenomenon might occur may be proposed. Site-directed mutagenesis of the ketosynthase (KS) and acylcarrier protein (ACP) domains in the interpolated module has shown that skipping within the hybrid PKS involves passage of the growing polyketide through the interpolated module, by direct ACP-to-ACP transfer of the polyketide chain.
一种含有装载模块(LM)、延伸模块红霉素模块1、雷帕霉素模块2和红霉素模块2(LM-Ery1-Rap2-Ery2-TE)的四酮合酶,当在红色糖多孢菌菌株JC2中表达时,如先前报道的那样产生了四酮内酯(次要产物)和三酮内酯(主要产物)的混合物。可以提出几种这种“跳跃”现象可能发生的合理机制。对插入模块中的酮合酶(KS)和酰基载体蛋白(ACP)结构域进行定点诱变表明,杂合聚酮合酶内的跳跃涉及生长中的聚酮通过直接的聚酮链从ACP到ACP转移穿过插入模块。