Petković Hrvoje, Sandmann Axel, Challis Iain R, Hecht Hans-Jürgen, Silakowski Barbara, Low Lindsey, Beeston Nicola, Kuscer Enej, Garcia-Bernardo Jose, Leadlay Peter F, Kendrew Steven G, Wilkinson Barrie, Müller Rolf
Biotica, Chesterford Research Park, Little Chesterford, Saffron Walden, Essex CB10 1XL, UK.
Org Biomol Chem. 2008 Feb 7;6(3):500-6. doi: 10.1039/b714804f. Epub 2007 Dec 12.
The production of epothilone mixtures is a direct consequence of the substrate tolerance of the module 3 acyltransferase (AT) domain of the epothilone polyketide synthase (PKS) which utilises both malonyl- and methylmalonyl-CoA extender units. Particular amino acid motifs in the active site of AT domains influence substrate selection for methylmalonyl-CoA (YASH) or malonyl-CoA (HAFH). This motif appears in hybrid form (HASH) in epoAT3 and may represent the molecular basis for the relaxed specificity of the domain. To investigate this possibility the AT domains from modules 2 and 3 of the epothilone PKS were examined in the heterologous DEBS1-TE model PKS. Substitution of AT1 of DEBS1-TE by epoAT2 and epoAT3 both resulted in functional PKSs, although lower yields of total products were observed when compared to DEBS1-TE (2% and 11.5% respectively). As expected, epoAT3 was significantly more promiscuous in keeping with its nature during epothilone biosynthesis. When the mixed motif (HASH) of epoAT3 within the hybrid PKS was mutated to HAFH (indicative of malonyl-CoA selection) it resulted in a non-productive PKS. When this mixed motif was converted to YASH (indicative of methylmalonyl-CoA selection) the selectivity of the hybrid PKS for methylmalonyl-CoA showed no statistically significant increase, and was associated with a loss of productivity.
埃坡霉素混合物的产生是埃坡霉素聚酮合酶(PKS)模块3酰基转移酶(AT)结构域底物耐受性的直接结果,该结构域利用丙二酰辅酶A和甲基丙二酰辅酶A作为延伸单元。AT结构域活性位点中的特定氨基酸基序会影响甲基丙二酰辅酶A(YASH)或丙二酰辅酶A(HAFH)的底物选择。这个基序在埃坡霉素AT3(epoAT3)中以杂合形式(HASH)出现,可能代表了该结构域特异性降低的分子基础。为了研究这种可能性,在异源的DEBS1-TE模型PKS中检测了埃坡霉素PKS模块2和3的AT结构域。用epoAT2和epoAT3替代DEBS1-TE的AT1均产生了有功能的PKS,尽管与DEBS1-TE相比,总产物产量较低(分别为DEBS1-TE的2%和11.5%)。正如预期的那样,epoAT3在埃坡霉素生物合成过程中表现出明显更高的底物选择性。当杂合PKS中epoAT3的混合基序(HASH)突变为HAFH(表明选择丙二酰辅酶A)时,产生了无活性的PKS。当这个混合基序转变为YASH(表明选择甲基丙二酰辅酶A)时,杂合PKS对甲基丙二酰辅酶A的选择性没有统计学上的显著增加,并且与生产力的损失相关。