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The continuing conundrum of the LEA proteins

机译:LEA蛋白的持续难题

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Research into late embryogenesis abundant (LEA) proteins has been ongoing for more than 20 years but, although there is a strong association of LEA proteins with abiotic stress tolerance particularly dehydration and cold stress, for most of that time, their function has been entirely obscure. After their initial discovery in plant seeds, three major groups (numbered 1, 2 and 3) of LEA proteins have been described in a range of different plants and plant tissues. Homologues of groups 1 and 3 proteins have also been found in bacteria and in certain invertebrates. In this review, we present some new data, survey the biochemistry, biophysics and bioinformatics of the LEA proteins and highlight several possible functions. These include roles as antioxidants and as membrane and protein stabilisers during water stress, either by direct interaction or by acting as molecular shields. Along with other hydrophilic proteins and compatible solutes, LEA proteins might also serve as "space fillers" to prevent cellular collapse at low water activities. This multifunctional capacity of the LEA proteins is probably attributable in part to their structural plasticity, as they are largely lacking in secondary structure in the fully hydrated state, but can become more-folded during water stress and/or through association with membrane surfaces. The challenge now facing researchers investigating these enigmatic proteins is to make sense of the various in vitro defined functions in the living cell: Arernthe LEA proteins truly multi-talented, or are they still just misunderstood?
机译:晚期胚胎发生丰富(LEA)蛋白的研究已经进行了20多年,但是,尽管LEA蛋白与非生物胁迫耐受性(尤其是脱水和冷胁迫)有很强的联系,但在大多数情况下,它们的功能完全模糊了。在植物种子中首次发现它们之后,已经在一系列不同的植物和植物组织中描述了三大类(分别为1、2和3)LEA蛋白。在细菌和某些无脊椎动物中也发现了第1组和第3组蛋白的同源物。在这篇综述中,我们提供了一些新数据,调查了LEA蛋白的生物化学,生物物理学和生物信息学,并重点介绍了几种可能的功能。这些包括通过直接相互作用或充当分子屏障而在水分胁迫期间充当抗氧化剂以及充当膜和蛋白质稳定剂。 LEA蛋白与其他亲水性蛋白和相容性溶质一起还可以充当“空间填充剂”,以防止在低水分活度下细胞崩溃。 LEA蛋白的这种多功能能力可能部分归因于其结构可塑性,因为它们在完全水合的状态下主要缺乏二级结构,但在水分胁迫和/或通过与膜表面结合时会变得更加折叠。研究这些神秘蛋白质的研究人员目前面临的挑战是,要弄清活细胞中各种体外定义的功能:Arernthe LEA蛋白质确实具有多种才能,还是仅仅是被人们误解了?

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