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Interactionof Proteins Associated with the MagnetosomeAssembly in Magnetotactic Bacteria As Revealed by Two-Hybrid Two-PhotonExcitation Fluorescence Lifetime Imaging Microscopy FörsterResonance Energy Transfer

机译:相互作用磁小体相关蛋白的合成两杂二光子揭示的趋磁细菌组装激发荧光寿命成像显微镜Förster共振能量转移

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摘要

Bacteria have recently revealed an unexpectedly complex level of intracellular organization. Magnetotactic bacteria represent a unique class of such organization through the presence of their magnetosome organelles, which are organized along the magnetosome filament. Although the role of individual magnetosomes-associated proteins has started to be unraveled, their interaction has not been addressed with current state-of-the-art optical microscopy techniques, effectively leaving models of the magnetotactic bacteria protein assembly arguable. Here we report on the use of FLIM-FRET to assess the interaction of MamK (actin-like protein) and MamJ, two magnetosome membrane associated proteins essential to the assembly of magnetosomes in a chain. We used a host organism (E. coli) to express eGFP_MamJ and MamK_mCherry, the latest expectedly forming a filament. We found that in the presence of MamK the fluorescence of eGFP_MamJ is distributed along the MamK filament. FRET analysis using the fluorescence lifetime of the donor, eGFP, revealed a spatial proximity of MamK_mCherry andeGFP_MamJ typical of a stable physical interaction between two proteins.Our study effectively led to the reconstruction of part of the magnetotacticapparatus in vivo.
机译:细菌最近揭示了细胞内组织异常复杂的水平。趋磁细菌通过沿磁小体丝组织的磁小体细胞器的存在,代表了这类组织的独特类别。尽管单个磁小体相关蛋白的作用已开始被阐明,但它们的相互作用尚未用当前的最新光学显微镜技术解决,有效地使磁致趋化细菌蛋白组装模型成为了争论。在这里,我们报道了使用FLIM-FRET来评估MamK(肌动蛋白样蛋白)和MamJ(两种与磁小体膜相关的蛋白,对链中磁小体的组装必不可少)的相互作用。我们使用宿主生物(大肠杆菌)表达eGFP_MamJ和MamK_mCherry,这是最新的有望形成的细丝。我们发现在存在MamK的情况下,eGFP_MamJ的荧光沿MamK细丝分布。使用供体eGFP的荧光寿命进行的FRET分析表明,MamK_mCherry和eGFP_MamJ典型代表两种蛋白质之间稳定的物理相互作用。我们的研究有效地导致了部分磁趋向的重建体内装置。

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