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首页> 外文期刊>Biochemistry >An unexpected interaction between the modular polyketide synthases, erythromycin DEBS1 and pikromycin PikAIV, leads to efficient triketide lactone synthesis.
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An unexpected interaction between the modular polyketide synthases, erythromycin DEBS1 and pikromycin PikAIV, leads to efficient triketide lactone synthesis.

机译:模块化聚酮化合物合酶,红霉素DEBS1和吡咯霉素PikAIV之间的意外相互作用导致有效的三酮化合物内酯合成。

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摘要

An unusual feature of the 6-module pikromycin polyketide synthase (PikPKS, PikAI-PikAIV) of S. venezuelae is the ability to generate both 12- and 14-membered ring macrolides. The PikAIV component containing the last extension module and a thioesterase domain is responsible for generating both of these products. In the case of the 12-membered ring macrolide, an acyl-enzyme intermediate on PikAIII is able to efficiently "skip" the last extension step and is cyclized by the TE domain of PikAIV, presumably as a result of a PikAIII-PikAIV interaction. Herein we report that plasmid-based expression (pBK3) of DEBS1, which comprises the loading domain and the first two modules of the Saccharopolyspora erythrea 6-deoxyerythronolide B synthase, in S. venezuelae leads to efficient 15 +/- 3 mg/L production of triketide lactone products (TKLs). Comparable levels of TKLs were observed with a plasmid (pBK1) which expressed DEBS1 fused to a TE domain (DEBS1-TE). These results are in stark contrast to previous in vivo and in vitro analyses, where only DEBS1-TE efficiently produces TKLs. Levels of TKLs decreased dramatically with expression of DEBS1 in both pikAIV and pikAIII-pikAIV deletion hosts (0.5 mg/L), but not DEBS1-TE, and could be partially restored by addition of a PikAIV complementation plasmid. These data suggest that PikAIV is able to efficiently catalyze formation of 6-membered lactone ring products from acyl-bound intermediates on DEBS1 in a manner analogous to that observed for 12-membered macrolide products from PikAIII. Significant sequence similarity and length of the C-terminal linker region of PikAIII and DEBS1 suggest that this region may be responsible for the interaction with PikAIV. A replacement of this linker region of DEBS1 with the corresponding region of PikAI led to a 95% decrease in TKL levels in S. venezuelae, consistent with this hypothesis.
机译:委内瑞拉链球菌的6-模块吡咯霉素聚酮化合物合酶(PikPKS,PikAI-PikAIV)的一个不寻常特征是能够生成12和14元环大环内酯。包含最后一个扩展模块和硫酯酶结构域的PikAIV组件负责生成这两种产物。在12元环大环内酯的情况下,PikAIII上的酰基酶中间体能够有效地“跳过”最后一个延伸步骤,并可能是PikAIII-PikAIV相互作用的结果,被PikAIV的TE结构域环化。在此,我们报道了在委内瑞拉链球菌中,DEBS1的基于质粒的表达(pBK3),该结构包含糖多孢红霉菌6-脱氧赤藓醇B合酶的加载域和前两个模块,可有效产生15 +/- 3 mg / L三酮内酯产品(TKL)。用表达与DE结构域融合的DEBS1(DEBS1-TE)的质粒(pBK1)观察到相当水平的TKL。这些结果与以前的体内和体外分析形成了鲜明的对比,以前的体内和体外分析只有DEBS1-TE有效地产生TKL。在pikAIV和pikAIII-pikAIV缺失宿主(0.5 mg / L)中,DEKL的表达使TKLs的水平急剧下降,但在DEBS1-TE中却没有,并且可以通过添加PikAIV互补质粒而部分恢复。这些数据表明,PikAIV能够以类似于对PikAIII的12元大环内酯类产物观察到的方式,有效地催化DEBS1上的酰基结合中间体形成6元内酯环产物。 PikAIII和DEBS1的C末端接头区域的序列相似性和长度均表明该区域可能是与PikAIV相互作用的原因。与此假设相一致,用对应的PikAI区域替换DEBS1的该接头区域导致委内瑞拉链球菌的TKL水平降低了95%。

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