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The CLE family of plant polypeptide signaling molecules

机译:植物多肽信号分子的CLE家族

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摘要

Polypeptide ligands have long been recognized as primary signaling molecules in diverse physiological processes in animal systems. Recent studies in plants have provided major breakthroughs with the discovery that small polypeptides are also involved in many plant biological processes, indicating that the use of polypeptides as signaling molecules in cell-to-cell communication is evolutionarily conserved. The CLAVATA3 (CLV3)/ENDOSPERM SURROUNDING REGION (ESR)-related (CLE) proteins are currently the best understood family of small polypeptides in plants. The recent isolation of MCLV3 from Arabidopsis and TDIF from a Zinnia cell culture system indicates that biologically active CLE polypeptides are produced by post-translational proteolysis and modification, similar to peptide hormone production in animals and yeast. Here, we review exciting discoveries involving the identification of the CLE proteins and their functions in various aspects of plant development, including restriction of stem cell accumulation by CLV3 and inhibition of xylem differentiation by TDIF.
机译:多肽配体早已被公认为是动物系统中各种生理过程中的主要信号分子。植物的最新研究提供了重大突破,这一发现是小多肽也参与了许多植物的生物学过程,这表明在进化上保守使用多肽作为信号分子在细胞间通信中是保守的。 CLAVATA3(CLV3)/胚乳周围区域(ESR)相关(CLE)蛋白是目前植物中小多肽家族中最广为人知的家族。最近从拟南芥中分离出MCLV3和从百日草属细胞培养系统中分离出TDIF的结果表明,具有生物活性的CLE多肽是通过翻译后蛋白水解和修饰产生的,类似于动物和酵母中肽激素的产生。在这里,我们回顾了令人兴奋的发现,这些发现涉及CLE蛋白的鉴定及其在植物发育各个方面的功能,包括通过CLV3限制干细胞积累和通过TDIF抑制木质部分化。

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