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Evolutionary origins of a bioactive peptide buried within Preproalbumin

dc.contributor.authorElliott, Alysha G
dc.contributor.authorDelay, Christina
dc.contributor.authorLiu, Huanli
dc.contributor.authorPhua, Zaiyang
dc.contributor.authorRosengren, K. Johan
dc.contributor.authorBenfield, Aurélie H.
dc.contributor.authorPanero, Jose L.
dc.contributor.authorColgrave, Michelle L
dc.contributor.authorJayasena, Achala S.
dc.contributor.authorDunse, Kerry M.
dc.contributor.authorAnderson, Marilyn
dc.contributor.authorSchilling, Edward E.
dc.date.accessioned2015-12-10T23:36:33Z
dc.date.issued2014
dc.date.updated2015-12-10T11:55:11Z
dc.description.abstractThe 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.
dc.identifier.issn1040-4651
dc.identifier.urihttp://hdl.handle.net/1885/70190
dc.publisherAmerican Society of Plant Biologists
dc.sourceThe Plant Cell
dc.titleEvolutionary origins of a bioactive peptide buried within Preproalbumin
dc.typeJournal article
local.bibliographicCitation.issue3
local.bibliographicCitation.lastpage995
local.bibliographicCitation.startpage981
local.contributor.affiliationElliott, Alysha G, The University of Queensland
local.contributor.affiliationDelay, Christina, College of Medicine, Biology and Environment, ANU
local.contributor.affiliationLiu, Huanli, The University of Queensland
local.contributor.affiliationPhua, Zaiyang, The University of Queensland
local.contributor.affiliationRosengren, K. Johan, The University of Queensland
local.contributor.affiliationBenfield, Aurélie H., The University of Queensland
local.contributor.affiliationPanero, Jose L., University of Texas
local.contributor.affiliationColgrave, Michelle L , CSIRO Livestock Industries
local.contributor.affiliationJayasena, Achala S., The University of Western Australia
local.contributor.affiliationDunse, Kerry M., La Trobe University
local.contributor.affiliationAnderson, Marilyn, La Trobe University
local.contributor.affiliationSchilling, Edward E., University of Tennessee
local.contributor.authoruidDelay, Christina, u5128044
local.description.embargo2037-12-31
local.description.notesImported from ARIES
local.identifier.absfor060705 - Plant Physiology
local.identifier.absseo970106 - Expanding Knowledge in the Biological Sciences
local.identifier.ariespublicationU3488905xPUB2247
local.identifier.citationvolume26
local.identifier.doi10.1105/tpc.114.123620
local.identifier.scopusID2-s2.0-84899144819
local.type.statusPublished Version

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