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枯草芽孢杆菌孢子萌发过程中 SpoVAEa 蛋白及其周围内膜脂质的组织和动态

Organization and dynamics of the SpoVAEa protein and its surrounding inner membrane lipids, upon germination of Bacillus subtilis spores.

机构信息

Molecular Biology and Microbial Food Safety, Swammerdam Institute for Life Sciences, University of Amsterdam, Science Park 904, 1098 XH, Amsterdam, The Netherlands.

Confocal.Nl B.V., Science Park 106, 1098 XG, Amsterdam, The Netherlands.

出版信息

Sci Rep. 2022 Mar 23;12(1):4944. doi: 10.1038/s41598-022-09147-3.

Abstract

The SpoVA proteins make up a channel in the inner membrane (IM) of Bacillus subtilis spores. This channel responds to signals from activated germinant receptors (GRs), and allows release of Ca-DPA from the spore core during germination. In the current work, we studied the location and dynamics of SpoVAEa in dormant spores. Notably, the SpoVAEa-SGFP2 proteins were present in a single spot in spores, similar to the IM complex formed by all GRs termed the germinosome. However, while the GRs' spot remains in one location, the SpoVAEa-SGFP2 spot in the IM moved randomly with high frequency. It seems possible that this movement may be a means of communicating germination signals from the germinosome to the IM SpoVA channel, thus stimulating CaDPA release in germination. The dynamics of the SpoVAEa-SGFP2 and its surrounding IM region as stained by fluorescent dyes were also tracked during spore germination, as the dormant spore IM appeared to have an immobile germination related functional microdomain. This microdomain disappeared around the time of appearance of a germinated spore, and the loss of fluorescence of the IM with fluorescent dyes, as well as the appearance of peak SpoVAEa-SGFP2 fluorescent intensity occurred in parallel. These observed events were highly related to spores' rapid phase darkening, which is considered as due to rapid CaDPA release. We also tested the response of SpoVAEa and the IM to thermal treatments at 40-80 °C. Heat treatment triggered an increase of green autofluorescence, which is speculated to be due to coat protein denaturation, and 80 °C treatments induce the appearance of phase-grey-like spores. These spores presumably have a similar intracellular physical state as the phase grey spores detected in the germination but lack the functional proteins for further germination events.

摘要

SpoVA 蛋白构成了枯草芽孢杆菌孢子内膜 (IM) 中的通道。该通道对激活的发芽受体 (GR) 的信号作出响应,并允许在发芽过程中从孢子核心中释放 Ca-DPA。在当前的工作中,我们研究了休眠孢子中 SpoVAEa 的位置和动态。值得注意的是,SpoVAEa-SGFP2 蛋白存在于孢子中的一个点,类似于所有 GR 形成的称为发芽体的 IM 复合物。然而,虽然 GR 的斑点保持在一个位置,但 IM 中的 SpoVAEa-SGFP2 斑点以高频随机移动。这种运动似乎可能是一种将发芽信号从发芽体传递到 IM SpoVA 通道的方式,从而刺激发芽过程中 CaDPA 的释放。在孢子发芽过程中,还跟踪了 SpoVAEa-SGFP2 及其周围 IM 区域的荧光染料染色的动力学,因为休眠孢子 IM 似乎具有不可移动的与发芽相关的功能微区。这个微区在发芽孢子出现时消失,并且与荧光染料一起的 IM 荧光的丧失,以及 SpoVAEa-SGFP2 荧光强度峰值的出现是平行的。这些观察到的事件与孢子的快速相变暗高度相关,这被认为是由于 CaDPA 的快速释放。我们还测试了 SpoVAEa 和 IM 对 40-80°C 热处理的反应。热处理引发绿色自发荧光的增加,这被推测是由于外壳蛋白变性所致,而 80°C 处理诱导出现相灰色样孢子。这些孢子可能具有与在发芽过程中检测到的相灰色孢子相似的细胞内物理状态,但缺乏进一步发芽事件的功能蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68b3/8943000/3694e903d9aa/41598_2022_9147_Fig1_HTML.jpg

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