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首页> 外文期刊>The Plant Cell >Evolutionary origins of a bioactive peptide buried within preproalbumin.
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Evolutionary origins of a bioactive peptide buried within preproalbumin.

机译:埋在前白蛋白中的生物活性肽的进化起源。

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The de novo evolution of proteins is now considered a frequented route for biological innovation, but the genetic and biochemical processes that lead to each newly created protein are often poorly documented. The common sunflower (Helianthus annuus) contains the unusual gene PawS1 (Preproalbumin with SFTI-1) that encodes a precursor for seed storage albumin; however, in a region usually discarded during albumin maturation, its sequence is matured into SFTI-1, a protease-inhibiting cyclic peptide with a motif homologous to unrelated inhibitors from legumes, cereals, and frogs. To understand how PawS1 acquired this additional peptide with novel biochemical functionality, we cloned PawS1 genes and showed that this dual destiny is over 18 million years old. This new family of mostly backbone-cyclic peptides is structurally diverse, but the protease-inhibitory motif was restricted to peptides from sunflower and close relatives from its subtribe. We describe a widely distributed, potential evolutionary intermediate PawS-Like1 (PawL1), which is matured into storage albumin, but makes no stable peptide despite possessing residues essential for processing and cyclization from within PawS1. Using sequences we cloned, we retrodict the likely stepwise creation of PawS1's additional destiny within a simple albumin precursor. We propose that relaxed selection enabled SFTI-1 to evolve its inhibitor function by converging upon a successful sequence and structure.
机译:蛋白质的从头进化现在被认为是生物创新的常见途径,但是导致每种新产生的蛋白质的遗传和生化过程通常文献记载不多。常见的向日葵(向日葵)含有不寻常的基因PawS1(具有SFTI-1的前白蛋白),其编码种子储存白蛋白的前体。然而,在白蛋白成熟期间通常被丢弃的区域中,其序列成熟为SFTI-1,SFTI-1是一种蛋白酶抑制性环肽,其基序与来自豆类,谷物和青蛙的无关抑制剂相同。为了了解PawS1如何获得具有新颖生化功能的这种额外肽,我们克隆了PawS1基因,并表明这种双重命运已经超过1800万年。这个新的主要是主链环肽的家族在结构上是多样的,但是蛋白酶抑制基序仅限于向日葵的肽和其亚族的近亲。我们描述了一个广泛分布的,潜在的进化中间产物PawS-Like1(PawL1),该中间物已成熟成为存储白蛋白,但是尽管具有从PawS1内部进行加工和环化所必需的残基,但没有稳定的肽。使用我们克隆的序列,我们可以预测在简单的白蛋白前体中逐步产生PawS1的其他命运的可能性。我们建议放松选择使SFTI-1通过融合成功的序列和结构来发展其抑制剂功能。

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