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首页> 外文期刊>Journal of Experimental Botany >Border sequences of Medicago truncatula CLE36 are specifically cleaved by endoproteases common to the extracellular fluids of Medicago and soybean
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Border sequences of Medicago truncatula CLE36 are specifically cleaved by endoproteases common to the extracellular fluids of Medicago and soybean

机译:run藜苜蓿CLE36的边界序列被苜蓿和大豆细胞外液共有的内切蛋白酶特异性切割

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摘要

CLE (CLAVATA3/ESR-related) peptides are developmental regulators that are secreted into the apoplast. Little is known about the role of the sequences that flank CLE peptides in terms of their biological activity or how they are targeted by proteases that are known to liberate the final active CLE peptides from their precursor sequences. The biological activity of Medicago truncatula CLE36, which possesses broadly conserved border sequences flanking the putative final active CLE36 peptide product, was assessed. Using in vitro root growth assays and an in vitro root and callus formation assay it is shown that CLE36 peptides of different lengths possess differential biological activities. Using mass spectrometry, Glycine max and Medicago extracellular fluids were each shown to possess an endoproteolytic activity that recognizes and cleaves at border sequences in a synthetic 31 amino acid CLE36 'propeptide bait' to liberate biologically active peptide products. Inhibitor studies suggest that a subtilisin, in combination with a carboxypeptidase, liberated and trimmed CLE36, respectively, to form biologically relevant 11-15 amino acid cleavage products. The 15 amino acid cleavage product is more biologically potent on Arabidopsis than shorter or longer CLE peptides. In situ hybridization shows that the soybean orthologue of CLE36 (GmCLE34) is expressed in the provascular tissue. The results suggest that secreted subtilisins can specifically recognize the border sequences of CLE36 propeptides and liberate biologically active cleavage products. These secreted proteases may affect the stability and biological activity of CLE peptides in the apoplast or be involved in CLE36 processing.
机译:CLE(CLAVATA3 / ESR相关)肽是分泌到质外体中的发育调节因子。关于CLE肽侧翼的序列的生物学活性或如何被已知从其前体序列释放最终活性CLE肽的蛋白酶靶向的方式,人们所知甚少。评估了截叶苜蓿CLE36的生物学活性,该物种具有广泛保守的边界序列,该边界序列位于假定的最终活性CLE36肽产物的两侧。使用体外根生长测定以及体外根和愈伤组织形成测定表明,不同长度的CLE36肽具有不同的生物学活性。使用质谱分析法显示,Glycine max和Medicago细胞外液均具有内蛋白水解活性,该活性可识别和切割合成的31个氨基酸的CLE36“前诱饵”中的边界序列,以释放生物活性肽产物。抑制剂研究表明,枯草杆菌蛋白酶与羧肽酶分别释放和修饰的CLE36形成生物学上相关的11-15个氨基酸裂解产物。与较短或较长的CLE肽相比,15个氨基酸的裂解产物在拟南芥上的生物学活性更高。原位杂交表明,CLE36(GmCLE34)的大豆直系同源基因在前血管组织中表达。结果表明,分泌的枯草杆菌蛋白酶可以特异性识别CLE36前肽的边界序列,并释放具有生物活性的裂解产物。这些分泌的蛋白酶可能会影响质外体中CLE肽的稳定性和生物学活性,或参与CLE36加工。

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