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To be or not to be a compatible solute: Bioversatility of mannosylglycerate and glucosylglycerate

机译:成为或不成为相容溶质:甘露糖基甘油酸酯和葡萄糖基甘油酸酯的生物多样性

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摘要

Mannosylglycerate (MG) is an intracellular organic solute found in some red algae, and several thermophilic bacteria and hyperthermophilic archaea. Glucosylglycerate (GG) was identified at the reducing end of a polysaccharide from mycobacteria and in a free form in a very few mesophilic bacteria and halophilic archaea. MG has a genuine role in the osmoadaptation and possibly in thermal protection of many hyper/thermophilic bacteria and archaea, but its role in red algae, where it was identified long before hyperthermophiles were even known to exist, remains to be clarified. The GG-containing polysaccharide was initially detected in Mycobacterium phlei and found to regulate fatty acid synthesis. More recently, GG has been found to be a major compatible solute under salt stress and nitrogen starvation in a few microorganisms. This review summarizes the occurrence and physiology of MG accumulation, as well as the distribution of GG, as a free solute or associated with larger macromolecules. We also focus on the recently identified pathways for the synthesis of both molecules, which were elucidated by studying hyper/thermophilic MG-accumulating organisms. The blooming era of genomics has now allowed the detection of these genes in fungi and mosses, opening a research avenue that spans the three domains of life, into the role of these two sugar derivatives.
机译:甘露糖基甘油酸酯(MG​​)是在某些红藻,一些嗜热细菌和超嗜热古细菌中发现的一种细胞内有机溶质。葡萄糖基甘油酸酯(GG)在分枝杆菌多糖的还原末端被鉴定出来,并以游离形式存在于极少数嗜温细菌和嗜盐古生菌中。 MG在渗透适应以及可能在许多超嗜热细菌和古细菌的热保护中具有真正作用,但它在红藻中的作用尚待阐明,MG在红藻中就已被证实,甚至早在已知超嗜热菌就已经存在。最初在牛分枝杆菌中检测到含GG的多糖,发现该多糖可调节脂肪酸的合成。最近,已发现在某些微生物的盐胁迫和氮饥饿下,GG是主要的相容溶质。这篇综述总结了作为游离溶质或与大分子缔合的MG积累的发生和生理以及GG的分布。我们还关注于最近确定的两种分子合成的途径,这些途径已通过研究高/嗜热性MG积累生物得以阐明。基因组学的蓬勃发展时代现在允许在真菌和苔藓中检测这些基因,从而开辟了跨越生命三个领域的研究途径,从而发挥了这两种糖衍生物的作用。

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