Semeraro Enrico F, Marx Lisa, Mandl Johannes, Frewein Moritz P K, Scott Haden L, Prévost Sylvain, Bergler Helmut, Lohner Karl, Pabst Georg
University of Graz, Institute of Molecular Biosciences, NAWI Graz, 8010 Graz, Austria.
BioTechMed Graz, 8010 Graz, Austria.
J Appl Crystallogr. 2021 Mar 3;54(Pt 2):473-485. doi: 10.1107/S1600576721000169. eCollection 2021 Apr 1.
A previously reported multi-scale model for (ultra-)small-angle X-ray (USAXS/SAXS) and (very) small-angle neutron scattering (VSANS/SANS) of live was revised on the basis of compositional/metabolomic and ultrastructural constraints. The cellular body is modeled, as previously described, by an ellipsoid with multiple shells. However, scattering originating from flagella was replaced by a term accounting for the oligosaccharide cores of the lipopolysaccharide leaflet of the outer membrane including its cross-term with the cellular body. This was mainly motivated by (U)SAXS experiments showing indistinguishable scattering for bacteria in the presence and absence of flagella or fimbrae. The revised model succeeded in fitting USAXS/SAXS and differently contrasted VSANS/SANS data of ATCC 25922 over four orders of magnitude in length scale. Specifically, this approach provides detailed insight into structural features of the cellular envelope, including the distance of the inner and outer membranes, as well as the scattering length densities of all bacterial compartments. The model was also successfully applied to K12, used for the authors' original modeling, as well as for two other strains. Significant differences were detected between the different strains in terms of bacterial size, intermembrane distance and its positional fluctuations. These findings corroborate the general applicability of the approach outlined here to quantitatively study the effect of bactericidal compounds on ultrastructural features of Gram-negative bacteria without the need to resort to any invasive staining or labeling agents.
基于成分/代谢组学和超微结构限制,对先前报道的用于活细胞的(超)小角X射线(USAXS/SAXS)和(极)小角中子散射(VSANS/SANS)的多尺度模型进行了修订。如前所述,细胞体由具有多个壳层的椭球体建模。然而,来自鞭毛的散射被一个项所取代,该项考虑了外膜脂多糖小叶的寡糖核心及其与细胞体的交叉项。这主要是由(U)SAXS实验所推动,该实验表明在有鞭毛或菌毛和没有鞭毛或菌毛的情况下细菌的散射无法区分。修订后的模型成功地拟合了ATCC 25922在四个数量级长度尺度上的USAXS/SAXS和不同对比度的VSANS/SANS数据。具体而言,这种方法提供了对细胞包膜结构特征的详细洞察,包括内膜和外膜的距离以及所有细菌区室的散射长度密度。该模型还成功应用于作者原始建模中使用的K12以及另外两种菌株。在不同菌株之间检测到细菌大小、膜间距离及其位置波动方面的显著差异。这些发现证实了此处概述的方法在定量研究杀菌化合物对革兰氏阴性菌超微结构特征的影响方面的普遍适用性,而无需借助任何侵入性染色或标记剂。