James Amy M, Jayasena Achala S, Zhang Jingjing, Berkowitz Oliver, Secco David, Knott Gavin J, Whelan James, Bond Charles S, Mylne Joshua S
School of Molecular Sciences, The University of Western Australia, Crawley, Perth 6009, Australia.
The ARC Centre of Excellence in Plant Energy Biology, The University of Western Australia, Crawley, Perth 6009, Australia.
Plant Cell. 2017 Mar;29(3):461-473. doi: 10.1105/tpc.16.00831. Epub 2017 Mar 14.
Bowman-Birk Inhibitors (BBIs) are a well-known family of plant protease inhibitors first described 70 years ago. BBIs are known only in the legume (Fabaceae) and cereal (Poaceae) families, but peptides that mimic their trypsin-inhibitory loops exist in sunflowers () and frogs. The disparate biosynthetic origins and distant phylogenetic distribution implies these loops evolved independently, but their structural similarity suggests a common ancestor. Targeted bioinformatic searches for the BBI inhibitory loop discovered highly divergent BBI-like sequences in the seedless, vascular spikemoss Using de novo transcriptomics, we confirmed expression of five transcripts in whose encoded proteins share homology with BBI inhibitory loops. The most highly expressed, , encodes a protein that inhibits trypsin. We needed to mutate two lysine residues to abolish trypsin inhibition, suggesting BBI3's mechanism of double-headed inhibition is shared with BBIs from angiosperms. As belongs to the lycopod plant lineage, which diverged ∼200 to 230 million years before the common ancestor of angiosperms, its BBI-like proteins imply there was a common ancestor for legume and cereal BBIs. Indeed, we discovered sequences in six angiosperm families outside the Fabaceae and Poaceae. These findings provide the evolutionary missing links between the well-known legume and cereal gene families.
鲍曼-伯克抑制剂(BBIs)是一类著名的植物蛋白酶抑制剂家族,70年前首次被描述。BBIs仅存在于豆科(豆科)和禾本科(禾本科)植物中,但在向日葵()和青蛙中存在模仿其胰蛋白酶抑制环的肽。不同的生物合成起源和遥远的系统发育分布意味着这些环是独立进化的,但它们的结构相似性表明有一个共同的祖先。针对BBI抑制环的靶向生物信息学搜索在无籽维管束穗苔中发现了高度不同的BBI样序列。使用从头转录组学,我们证实了5个转录本在中的表达,其编码的蛋白质与BBI抑制环具有同源性。表达量最高的,编码一种抑制胰蛋白酶的蛋白质。我们需要突变两个赖氨酸残基来消除胰蛋白酶抑制作用,这表明BBI3的双头抑制机制与被子植物的BBIs相同。由于属于石松植物谱系,在被子植物的共同祖先之前约2亿至2.3亿年就分化了,其BBI样蛋白意味着豆科和禾本科的BBIs有一个共同的祖先。事实上,我们在豆科和禾本科以外的六个被子植物科中发现了序列。这些发现提供了著名的豆科和禾本科基因家族之间进化上缺失的环节。