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非环多烯大环内酯立体化学的交替模式是其具有抗菌活性和高效离子结合能力的必要条件。

Alternating pattern of stereochemistry in the nonactin macrocycle is required for antibacterial activity and efficient ion binding.

机构信息

Department of Chemistry and Biochemistry, University of Montana, 32 Campus Drive, Missoula, Montana 59812-1656, USA.

出版信息

J Am Chem Soc. 2009 Dec 2;131(47):17155-65. doi: 10.1021/ja9050235.

Abstract

Nonactin is a polyketide antibiotic produced by Streptomyces griseus ETH A7796 and is an ionophore that is selective for K(+) ions. It is a cyclic tetraester generated from two monomers of (+)-nonactic acid and two of (-)-nonactic acid, arranged (+)-(-)-(+)-(-) so that nonactin has S4 symmetry and is achiral. To understand why achiral nonactin is the naturally generated diastereoisomer, we generated two alternate diastereoisomers of nonactin, one prepared solely from (+)-nonactic acid and one prepared solely from (-)-nonactic acid, referred to here as 'all-(+)-nonactin' and 'all-(-)-nonactin', respectively. Both non-natural diastereoisomers were 500-fold less active against gram positive organisms than nonactin confirming that the natural stereochemistry is necessary for biological activity. We used isothermal calorimetry to obtain the K(a), DeltaG, DeltaH, and DeltaS of formation for the K(+), Na(+), and NH(4)(+) complexes of nonactin and all-(-)-nonactin; the natural diastereoisomer bound K(+) 880-fold better than all-(-)-nonactin. A picrate partitioning assay confirmed that all-(-)-nonactin, unlike nonactin, could not partition K(+) ions into organic solvent. To complement the thermodynamic data we used a simple model system to show that K(+) transport was facilitated by nonactin but not by all-(-)-nonactin. Modeling of the K(+) complexes of nonactin and all-(-)-nonactin suggested that poor steric interactions in the latter complex precluded tight binding to K(+). Overall, the data show that both enantiomers of nonactic acid are needed for the formation of a nonactin diastereoisomer that can act as an ionophore and has antibacterial activity.

摘要

非他命是一种由灰色链霉菌 ETH A7796 产生的聚酮类抗生素,是一种对 K(+)离子具有选择性的离子载体。它是由两个 (+)-非己酸单体和两个 (-)-非己酸单体组成的环状四酯,排列方式为 (+)-(-)-(+)-(-),因此非他命具有 S4 对称性且无手性。为了理解为什么无手性的非他命是天然产生的非对映异构体,我们合成了两种非他命的非对映异构体,一种仅由 (+)-非己酸制成,另一种仅由 (-)-非己酸制成,分别称为“全-(+)-非他命”和“全-(-)-非他命”。两种非天然的非对映异构体对革兰氏阳性菌的活性均比非他命低 500 倍,证实了天然立体化学结构对于生物活性是必要的。我们使用等温滴定量热法获得了非他命和全-(-)-非他命与 K(+)、Na(+)和 NH(4)(+)形成复合物的 K(a)、DeltaG、DeltaH 和 DeltaS;天然非对映异构体与 K(+)的结合能力比全-(-)-非他命高 880 倍。苦味酸盐分配实验证实,与非他命不同,全-(-)-非他命不能将 K(+)离子分配到有机溶剂中。为了补充热力学数据,我们使用一个简单的模型系统表明,非他命促进了 K(+)的转运,但全-(-)-非他命则不能。非他命和全-(-)-非他命的 K(+)复合物的建模表明,后者复合物中较差的空间相互作用阻碍了与 K(+)的紧密结合。总体而言,数据表明,非己酸的两种对映异构体都需要形成一种可以作为离子载体并具有抗菌活性的非他命非对映异构体。

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