首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Mechanistic target of rapamycin (mTOR) signaling genes in decapod crustaceans: Cloning and tissue expression of mTOR, Akt, Rheb, and p70 S6 kinase in the green crab, Carcinus maenas, and blackback land crab, Gecarcinus lateralis
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Mechanistic target of rapamycin (mTOR) signaling genes in decapod crustaceans: Cloning and tissue expression of mTOR, Akt, Rheb, and p70 S6 kinase in the green crab, Carcinus maenas, and blackback land crab, Gecarcinus lateralis

机译:十足纲甲壳动物中雷帕霉素(mTOR)信号基因的机械靶标:绿蟹,美人鱼和黑背陆生蟹,侧生car蟹中mTOR,Akt,Rheb和p70 S6激酶的克隆和组织表达

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Mechanistic target of rapamycin (mTOR) controls global translation of mRNA into protein by phosphorylating p70 S6 kinase (S6K) and eIF4E-binding protein-1. Akt and Rheb, a GTP-binding protein, regulate mTOR protein kinase activity. Molting in crustaceans is regulated by ecdysteroids synthesized by a pair of molting glands, or Y-organs (YOs), located in the cephalothorax. During premolt, the YOs hypertrophy and increase production of ecdysteroids. Rapamycin (1 μM) inhibited ecdysteroid secretion in Carcinus maenas and Gecarcinus lateralis YOs in vitro, indicating that ecdysteroidogenesis requires mTOR-dependent protein synthesis. The effects of molting on the expression of four key mTOR signaling genes (mTOR, Akt, Rheb, and S6K) in the YO was investigated. Partial cDNAs encoding green crab (C.maenas)mTOR (4031 bp), Akt (855 bp), and S6K (918 bp)were obtained from expressed sequence tags. Identity/similarity of the deduced amino acid sequence of the C. maenas cDNAs to human orthologs were 72%/81% for Cm-mTOR, 58%/73% for Cm-Akt, and 77%/88% for Cm-S6K. mTOR, Akt, S6K, and elongation factor 2 (EF2) in C. maenas and blackback land crab (G. lateralis) were expressed in all tissues examined. The two species differed in the effects of molting on gene expression in the YO. In G. lateralis, Gl-mTOR, Gl-Akt, and Gl-EF2 mRNA levels were increased during premolt. By contrast, molting had no effect on the expression of Cm-mTOR, Cm-Akt, Cm-S6K, Cm-Rheb, and Cm-EF2. These data suggest that YO activation during premolt involves up regulation of mTOR signaling genes in G. lateralis, but is not required in C. maenas.
机译:雷帕霉素(mTOR)的机制靶标通过磷酸化p70 S6激酶(S6K)和eIF4E结合蛋白1来控制mRNA整体翻译为蛋白质。 GTP结合蛋白Akt和Rheb调节mTOR蛋白激酶活性。甲壳类动物的蜕皮是由蜕皮类固醇调节的,蜕皮类固醇由位于头胸部的一对蜕皮腺或Y型器官(YOs)合成。在蜕皮前,YOs肥大并增加蜕皮类固醇的产生。雷帕霉素(1μM)在体外抑制肉食蟹和侧叶轮虫YOs中蜕皮激素的分泌,表明蜕皮激素的生成需要mTOR依赖性蛋白的合成。研究了蜕皮对YO中四个关键mTOR信号基因(mTOR,Akt,Rheb和S6K)表达的影响。从表达的序列标签中获得编码青蟹(C.maenas)mTOR(4031 bp),Akt(855 bp)和S6K(918 bp)的部分cDNA。 Cena maenas cDNA与人直系同源物的推导氨基酸序列的同一性/相似性,对于Cm-mTOR为72%/ 81%,对于Cm-Akt为58%/ 73%,对于Cm-S6K为77%/ 88%。在所有检查过的组织中,美人鱼和黑背大闸蟹(侧柏)中的mTOR,Akt,S6K和延伸因子2(EF2)均表达。蜕皮对YO中基因表达的影响不同。在侧柏中,G1-mTOR,G1-Akt和G1-EF2 mRNA水平在前蜕皮过程中增加。相比之下,蜕皮对Cm-mTOR,Cm-Akt,Cm-S6K,Cm-Rheb和Cm-EF2的表达没有影响。这些数据表明,在前蜕皮过程中,YO激活牵涉到侧柏中mTOR信号基因的上调,但在美式梭菌中则不是必需的。

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