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小人国居民备受瞩目:形态发生中新型小肽基因类群

Lilliputians get into the limelight: novel class of small peptide genes in morphogenesis.

作者信息

Hashimoto Yoshiko, Kondo Takefumi, Kageyama Yuji

机构信息

Laboratory of Developmental Genetics, Okazaki Institute for Integrative Bioscience, National Institutes of Natural Sciences, 5-1 Myodaiji-Higashiyama, Okazaki 444-8787, Japan.

出版信息

Dev Growth Differ. 2008 Jun;50 Suppl 1:S269-76. doi: 10.1111/j.1440-169X.2008.00994.x. Epub 2008 May 6.

Abstract

Generally, bioactive small peptides are derived from precursors with signal sequences at their N-terminal ends, which undergo modification and proteolysis through a secretory pathway. By contrast, small peptides encoded in short open reading frames (sORF) lack signaling sequences and therefore are released into the cytoplasm, which may result in their having functions distinct from those of secreted peptides. Several small peptides encoded by sORF are involved in the morphogenesis of multicellular organisms. POLARIS, ROTUNDIFOLIA4, and Enod40 are plant peptides that are involved, respectively, in root formation, leaf shape control, and cortical cell division during nodule formation. Brick1/HSPC300 is an evolutionarily conserved component of the actin reorganization complex. polished rice/tarsal-less and mille-pattes encode related small peptides that are required for epithelial morphogenesis in Drosophila and segmentation in Tribolium. There are only a few known examples of small peptides encoded by sORF, and their molecular functions are still largely obscure. Nevertheless, an increasing number of sORF genes is being identified, and further research should reveal their roles in novel molecular mechanisms underlying developmental events.

摘要

一般来说,生物活性小肽来源于N端带有信号序列的前体,这些前体通过分泌途径进行修饰和蛋白水解。相比之下,短开放阅读框(sORF)编码的小肽缺乏信号序列,因此释放到细胞质中,这可能导致它们具有与分泌肽不同的功能。sORF编码的几种小肽参与多细胞生物的形态发生。POLARIS、ROTUNDIFOLIA4和Enod40是植物肽,分别参与根的形成、叶形控制和根瘤形成过程中的皮层细胞分裂。Brick1/HSPC300是肌动蛋白重组复合体中一个进化保守的组分。糙米饭/无跗节和千足虫编码相关的小肽,它们是果蝇上皮形态发生和拟步甲节段化所必需的。sORF编码的小肽已知例子很少,其分子功能在很大程度上仍不清楚。然而,越来越多的sORF基因正在被鉴定出来,进一步的研究应该会揭示它们在发育事件潜在新分子机制中的作用。

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