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在鱼腥藻 PCC 7120 中异形胞分化过程中,FraH 对于细胞内膜的重组是必需的。

FraH is required for reorganization of intracellular membranes during heterocyst differentiation in Anabaena sp. strain PCC 7120.

机构信息

Instituto de Bioquímica Vegetal y Fotosíntesis, Consejo Superior de Investigaciones Científicas and Universidad de Sevilla, Seville, Spain.

出版信息

J Bacteriol. 2011 Dec;193(24):6815-23. doi: 10.1128/JB.05995-11. Epub 2011 Sep 23.

Abstract

In the filamentous, heterocyst-forming cyanobacteria, two different cell types, the CO(2)-fixing vegetative cells and the N(2)-fixing heterocysts, exchange nutrients and regulators for diazotrophic growth. In the model organism Anabaena sp. strain PCC 7120, inactivation of fraH produces filament fragmentation under conditions of combined nitrogen deprivation, releasing numerous isolated heterocysts. Transmission electron microscopy of samples prepared by either high-pressure cryo-fixation or chemical fixation showed that the heterocysts of a ΔfraH mutant lack the intracellular membrane system structured close to the heterocyst poles, known as the honeycomb, that is characteristic of wild-type heterocysts. Using a green fluorescent protein translational fusion to the carboxyl terminus of FraH (FraH-C-GFP), confocal microscopy showed spots of fluorescence located at the periphery of the vegetative cells in filaments grown in the presence of nitrate. After incubation in the absence of combined nitrogen, localization of FraH-C-GFP changed substantially, and the GFP fluorescence was conspicuously located at the cell poles in the heterocysts. Fluorescence microscopy and deconvolution of images showed that GFP fluorescence originated mainly from the region next to the cyanophycin plug present at the heterocyst poles. Intercellular transfer of the fluorescent tracers calcein (622 Da) and 5-carboxyfluorescein (374 Da) was either not impaired or only partially impaired in the ΔfraH mutant, suggesting that FraH is not important for intercellular molecular exchange. Location of FraH close to the honeycomb membrane structure and lack of such structure in the ΔfraH mutant suggest a role of FraH in reorganization of intracellular membranes, which may involve generation of new membranes, during heterocyst differentiation.

摘要

在丝状异形胞形成的蓝藻中,两种不同的细胞类型,即 CO2 固定的营养细胞和 N2 固定的异形胞,为固氮生长交换营养物质和调节剂。在模式生物鱼腥藻 PCC 7120 中,fraH 的失活会导致在缺乏组合氮的条件下产生丝状分裂,释放出许多孤立的异形胞。通过高压冷冻固定或化学固定制备的样品的透射电子显微镜观察表明,ΔfraH 突变体的异形胞缺乏靠近异形胞极的细胞内膜系统,该系统称为蜂窝状结构,是野生型异形胞的特征。使用绿色荧光蛋白翻译融合到 FraH(FraH-C-GFP)的羧基末端,共聚焦显微镜显示在存在硝酸盐的情况下生长的丝状物中,荧光斑点位于营养细胞的外围。在缺乏组合氮的条件下孵育后,FraH-C-GFP 的定位发生了很大变化,GFP 荧光在异形胞的细胞极处明显定位。荧光显微镜和图像反卷积显示,GFP 荧光主要来自存在于异形胞极的藻青素塞旁边的区域。荧光示踪剂钙黄绿素(622 Da)和 5-羧基荧光素(374 Da)的细胞间转移在 ΔfraH 突变体中要么没有受损,要么只有部分受损,这表明 FraH 对于细胞间分子交换不重要。FraH 靠近蜂窝状膜结构的位置以及 ΔfraH 突变体中缺乏这种结构表明 FraH 在异形胞分化过程中可能在细胞内膜的重排中发挥作用,这可能涉及新膜的产生。

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本文引用的文献

1
Outer membrane continuity and septosome formation between vegetative cells in the filaments of Anabaena sp. PCC 7120.
Cell Microbiol. 2011 Nov;13(11):1744-54. doi: 10.1111/j.1462-5822.2011.01655.x. Epub 2011 Sep 20.
2
FraC/FraD-dependent intercellular molecular exchange in the filaments of a heterocyst-forming cyanobacterium, Anabaena sp.
Mol Microbiol. 2011 Oct;82(1):87-98. doi: 10.1111/j.1365-2958.2011.07797.x. Epub 2011 Sep 15.
3
Functional dissection of the three-domain SepJ protein joining the cells in cyanobacterial trichomes.
Mol Microbiol. 2011 Feb;79(4):1077-88. doi: 10.1111/j.1365-2958.2010.07508.x. Epub 2010 Dec 30.
4
Specific role of the cyanobacterial PipX factor in the heterocysts of Anabaena sp. strain PCC 7120.
J Bacteriol. 2011 Mar;193(5):1172-82. doi: 10.1128/JB.01202-10. Epub 2010 Dec 30.
5
Structural and functional analysis of phosphothreonine-dependent FHA domain interactions.
Structure. 2010 Dec 8;18(12):1587-95. doi: 10.1016/j.str.2010.09.014.
6
A phylum level perspective on bacterial cell envelope architecture.
Trends Microbiol. 2010 Oct;18(10):464-70. doi: 10.1016/j.tim.2010.06.005. Epub 2010 Jul 14.
7
The structure and function of bacterial actin homologs.
Cold Spring Harb Perspect Biol. 2010 Sep;2(9):a000364. doi: 10.1101/cshperspect.a000364. Epub 2010 Jul 14.
8
Multicellularity in a heterocyst-forming cyanobacterium: pathways for intercellular communication.
Adv Exp Med Biol. 2010;675:123-35. doi: 10.1007/978-1-4419-1528-3_8.
10
Cyanobacterial heterocysts.
Cold Spring Harb Perspect Biol. 2010 Apr;2(4):a000315. doi: 10.1101/cshperspect.a000315. Epub 2010 Feb 24.

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