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休眠孢子中 SpoVAEa 蛋白动力学的可视化及其在萌发过程中 germinosomes 和 SpoVAEa 的动态变化。

Visualization of SpoVAEa Protein Dynamics in Dormant Spores of and Dynamic Changes in Their Germinosomes and SpoVAEa during Germination.

机构信息

Molecular Biology and Microbial Food Safety, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, The Netherlands.

Department of Molecular Biology and Biophysics, UConn Health, Farmington, Connecticut, USA.

出版信息

Microbiol Spectr. 2022 Jun 29;10(3):e0066622. doi: 10.1128/spectrum.00666-22. Epub 2022 May 11.

Abstract

Bacillus cereus spores, like most spores, can survive for years and germinate when their surroundings become suitable, and germination proteins play an important role in the initiation of germination. Because germinated spores lose the extreme resistance of dormant spores, information on the function of germination proteins could be useful in developing new strategies to control B. cereus spores. Prior work has shown that (i) the channel protein SpoVAEa exhibits high-frequency movement in the outer leaflet of the inner membrane (IM) in dormant B. subtilis spores and (ii) the formation of the foci termed germinosomes between two germination proteins, the germinant receptor GerR and the scaffold protein GerD, in developing B. cereus spores is slower than foci formation by GerR and GerD individually. However, the movement dynamics of SpoVAEa in B. cereus spores, and the behavior of the germinosome upon B. cereus spore germination, are not known. In this study, we found that SpoVAEa fluorescent foci in dormant B. cereus spores move on the IM, but slower than in B. subtilis spores, and they likely co-localize transiently with GerD-mScarlet-I in the germinosome. Our results further indicate that (i) the expression of GerR-SGFP2 and SpoVAEa-SGFP2 with GerD-mScarlet-I from a plasmid leads to more heterogeneity and lower efficiency of spore germination in B. cereus, and (ii) germinosome foci observed by Fluorescence resonance energy transfer (FRET) between GerR-SGFP2 and GerD-mScarlet-I can be lost soon after the spore-phase transition. However, this is not always the case, as some GerR-SGFP2 and GerD-mScarlet-I foci continued to exist, co-localize, and even show a weak FRET signal. These data highlight the heterogeneous behavior of spore germination protein complexes and indicate that some complexes may persist beyond the initiation of germination. Bacillus cereus is commonly present in soil and infects humans via contaminated food. In this study, we used B. cereus spores to investigate the movement of the spore-specific inner membrane (IM) channel protein SpoVAEa, the interaction between SpoVAEa and the germinosome scaffold protein GerD, and the dynamics of germinosomes with GerR and GerD in spore germination. Our results expand upon observations of interactions between specific B. cereus spore germination proteins, in particular the GerR germinant receptor A, B, and C subunits and GerD, as well as those between SpoVAEa and GerD. The approaches used in this work could also be used to examine the interactions between GerD and SpoVAEa and other germination proteins in spores of other species.

摘要

蜡样芽胞杆菌孢子与大多数孢子一样,可以存活数年,并在环境适宜时发芽,发芽蛋白在发芽起始中起着重要作用。由于发芽孢子失去了休眠孢子的极端抗性,因此关于发芽蛋白功能的信息可能有助于开发控制蜡样芽胞杆菌孢子的新策略。先前的工作表明:(i)通道蛋白 SpoVAEa 在休眠枯草芽孢杆菌孢子的内膜(IM)外叶层中表现出高频运动;(ii)在发育中的蜡样芽胞杆菌孢子中,发芽受体 GerR 和支架蛋白 GerD 之间形成的称为发芽体的焦点比 GerR 和 GerD 单独形成的焦点形成得更慢。然而,SpoVAEa 在蜡样芽胞杆菌孢子中的运动动态以及蜡样芽胞杆菌孢子发芽时发芽体的行为尚不清楚。在这项研究中,我们发现,在休眠的蜡样芽胞杆菌孢子中,SpoVAEa 荧光焦点在 IM 上移动,但速度比枯草芽孢杆菌孢子慢,并且它们可能与发芽体中的 GerD-mScarlet-I 短暂共定位。我们的结果进一步表明:(i)质粒上带有 GerR-SGFP2 和 SpoVAEa-SGFP2 与 GerD-mScarlet-I 的表达导致蜡样芽胞杆菌中孢子萌发的异质性和效率降低;(ii)通过荧光共振能量转移(FRET)在 GerR-SGFP2 和 GerD-mScarlet-I 之间观察到的发芽体焦点在孢子相变后很快丢失。然而,并非总是如此,因为一些 GerR-SGFP2 和 GerD-mScarlet-I 焦点继续存在,共定位,甚至显示出微弱的 FRET 信号。这些数据突出了孢子发芽蛋白复合物的异质行为,并表明一些复合物可能在发芽起始后继续存在。蜡样芽胞杆菌通常存在于土壤中,并通过受污染的食物感染人类。在这项研究中,我们使用蜡样芽胞杆菌孢子来研究特定于孢子的内膜(IM)通道蛋白 SpoVAEa 的运动、SpoVAEa 与发芽体支架蛋白 GerD 的相互作用以及芽胞中 GerR 和 GerD 与芽体的动力学。我们的结果扩展了对特定蜡样芽胞杆菌孢子发芽蛋白相互作用的观察,特别是 GerR 发芽受体 A、B 和 C 亚基和 GerD,以及 SpoVAEa 与 GerD 之间的相互作用。这项工作中使用的方法还可以用于检查其他物种孢子中 GerD 和 SpoVAEa 与其他发芽蛋白之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd17/9241617/cafc3cebe263/spectrum.00666-22-f001.jpg

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