st proteins, a new family of plant tandem repeat proteins with a duf2775 domain mainly found in fabaceae and asteraceae圣蛋白质,一个新家庭的植物串联重复序列蛋白duf2775域主要存在于豆科和菊科.pdfVIP

st proteins, a new family of plant tandem repeat proteins with a duf2775 domain mainly found in fabaceae and asteraceae圣蛋白质,一个新家庭的植物串联重复序列蛋白duf2775域主要存在于豆科和菊科.pdf

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st proteins, a new family of plant tandem repeat proteins with a duf2775 domain mainly found in fabaceae and asteraceae圣蛋白质,一个新家庭的植物串联重复序列蛋白duf2775域主要存在于豆科和菊科

Albornos et al. BMC Plant Biology 2012, 12:207 /1471-2229/12/207 RESEARCH ARTICLE Open Access ST proteins, a new family of plant tandem repeat proteins with a DUF2775 domain mainly found in Fabaceae and Asteraceae * Lucía Albornos, Ignacio Martín, Rebeca Iglesias, Teresa Jiménez, Emilia Labrador and Berta Dopico Abstract Background: Many proteins with tandem repeats in their sequence have been described and classified according to the length of the repeats: I) Repeats of short oligopeptides (from 2 to 20 amino acids), including structural cell wall proteins and arabinogalactan proteins. II) Repeats that range in length from 20 to 40 residues, including proteins with a well-established three-dimensional structure often involved in mediating protein-protein interactions. (III) Longer repeats in the order of 100 amino acids that constitute structurally and functionally independent units. Here we analyse ShooT specific (ST) proteins, a family of proteins with tandem repeats of unknown function that were first found in Leguminosae, and their possible similarities to other proteins with tandem repeats. Results: ST protein sequences were only found in dicotyledonous plants, limited to several plant families, mainly the Fabaceae and the Asteraceae. ST mRNAs accumulate mainly in the roots and under biotic interactions. Most ST proteins have one or several Domain(s) of Unknown Function 2775 (DUF2775). All deduced ST proteins have a signal peptide, indicating that these proteins enter the secretory pathway, and the mature proteins have tandem repeat oligopeptides that share a hexapeptide (E/D)FEPRP followed by 4 partially conserved amino acids, which could determine a putative N-glycosylation signal, an

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