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Conformational folding of mycobacterial methoxy- and ketomycolic acids facilitated by α-methyl trans-cyclopropane groups rather than cis-cyclopropane units

机译:α-甲基反式环丙烷基团而非顺式环丙烷单元促进了分枝杆菌甲氧基和酮酸的构象折叠

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The oxygenated long-chain mycolic acids from many mycobacteria are characterized by the presence of mid-chain cyclopropane groups, which can have either cis-configuration or trans-configuration with an adjacent methyl branch. To determine the effect of these functional groups on mycolic acid conformation, surface pressure (π) versus mean molecular area isotherms of methoxy- (MeO-) mycolic acids (MAs) from Mycobacterium kansasii, Mycobacterium tuberculosis (Mtb) Canetti and Mtb H37Ra, and of keto-MAs from Mycobacterium avium-intracellulare complex (MAC) and Mtb H37Ra were recorded and analysed. The MeO- and keto-MAs from Mtb H37Ra, containing scarcely any trans-cyclopropyl groups, apparently took no fully folded ‘W-form’ conformations. Keto-MA from MAC, whose trans-cyclopropyl group content is nearly 90?%, showed a very solid W-form conformation. MeO-MAs from M. kansasii and Mtb Canetti gave stable W-form conformations at lower temperatures and surface pressures and extended conformations at higher temperatures and surface pressures; their W-form conformation was not as stable as expected from their cis-cyclopropyl group content, probably because they had a wide range of constituent homologues. Energy level calculations of cis- or α-methyl trans-cyclopropane-containing model molecules and computer simulation studies confirmed the superior folding properties of the latter functional unit. The present results were compared with those of MeO- and keto-MAs from Mtb and from M. bovis Bacillus Calmette–Guérin (BCG) reported previously. Among the oxygenated MAs, those having higher trans-cyclopropane content tended to take W-form conformations more firmly, implying that the meromycolate proximal intra-chain α-methyl trans-cyclopropane groups facilitated MA folding more than cis-cyclopropane groups.
机译:来自许多分枝杆菌的含氧长链分支链霉酸的特征在于存在中链环丙烷基团,该基团可以具有顺式构型或具有相邻甲基分支的反式构型。为了确定这些官能团对霉菌酸构象的影响,使用堪萨斯分枝杆菌,结核分枝杆菌(Mtb)Canetti和Mtb H37Ra和记录并分析了鸟分枝杆菌-细胞内复合物(MAC)和Mtb H37Ra的酮-MAs含量。 Mtb H37Ra的MeO和酮基MAs几乎不含反式环丙基,显然没有完全折叠的“ W形”构象。 MAC的Keto-MA的反式环丙基基团含量接近90%,显示出非常牢固的W型构象。堪萨斯分枝杆菌和Mtb Canetti的MeO-MA在较低的温度和表面压力下可产生稳定的W型构象,而在较高的温度和表面压力下可得到扩展的构象。它们的W型构象不如顺式环丙基基团预期的那样稳定,可能是因为它们具有广泛的组成同系物。含顺式或α-甲基反式环丙烷的模型分子的能级计算和计算机模拟研究证实了后者功能单元的优越折叠性能。将目前的结果与之前报道的来自Mtb和牛分枝杆菌的MeO-和Keto-MAs的结果进行了比较。在含氧的MAs中,具有较高反式环丙烷含量的MAs倾向于更牢固地呈W构型,这意味着与邻位环丙烷基团相比,巯基近链内α-甲基反式环丙烷基团更易于MA折叠。

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