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首页> 外文期刊>General and comparative endocrinology >Cloning of Atlantic halibut growth hormone receptor genes and quantitative gene expression during metamorphosis.
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Cloning of Atlantic halibut growth hormone receptor genes and quantitative gene expression during metamorphosis.

机译:大西洋大比目鱼生长激素受体基因的克隆和变态过程中的定量基因表达。

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摘要

To gain insight into the possible regulatory role of the growth hormone (GH)-insulin-like growth factor I (IGF-I) system in flatfish metamorphosis, body GHR gene expression as well as IGF-I protein content was quantified in larval Atlantic halibut throughout metamorphosis (developmental stages 5-10). The cDNA of the full-length GH receptor (hhGHR) was cloned from adult liver and characterized. The hhGHR shows common features of a GHR, including a (Y/F)GEFS motif in the extracellular domain, a single transmembrane region, and an intracellular domain containing a Box 1 and Box 2. Additionally, a truncated GHR (hhGHRtr), similar to turbot and Japanese flounder GHRtr, was cloned and sequenced. These sequences are highly similar to the full-length and truncated GHRs in turbot (89%/86%) and Japanese flounder (93%/91%) with lower identity with other fish type I GHR (81%) and type II GHRs (58%). A quantitative real-time RT-PCR assay was used to measure hhGHR and hhGHRtr mRNA content in normally and abnormally metamorphosed individuals at six developmental stages, from early pre-metamorphosis to post-metamorphosis, when the fish is considered a juvenile. The level of hhGHR gene expression was highest at pre-metamorphic stage 6 and at stage 8 at the onset of metamorphosis, and then decreased during metamorphic climax and post-metamorphosis. Expression of hhGHRtr reached highest levels at stage 6 and then decreased to post-metamorphosis. The ratio of expression between the full-length and the truncated GHR (hhGHR:hhGHRtr) varied among stages and was highest at the onset of metamorphosis and at metamorphic climax. A radioimmunoassay was used to measure halibut IGF-I body content throughout metamorphosis. IGF-I increases from early metamorphosis to the onset of metamorphosis and then decreases towards post-metamorphosis. In comparison between normally and abnormally metamorphosing larvae, IGF-I content, hhGHR and hhGHRtr mRNA levels were reduced in the abnormal fish. These data indicate that the GH-IGF-I system either has a regulatory role in metamorphosis, or is being affected as a consequence of the abnormal metamorphosis.
机译:为了深入了解生长激素(GH)-胰岛素样生长因子I(IGF-I)系统在比目鱼变态中的可能调节作用,定量了大西洋大西洋大比目鱼体内的GHR基因表达和IGF-I蛋白含量整个变态(发育阶段5-10)。从成年肝脏中克隆了全长GH受体(hhGHR)的cDNA并进行了鉴定。 hhGHR显示GHR的共同特征,包括细胞外结构域中的(Y / F)GEFS基序,单个跨膜区域以及包含框1和框2的胞内结构域。此外,截短的GHR(hhGHRtr)类似对大菱turbo和日本比目鱼GHRtr进行克隆和测序。这些序列与大菱t(89%/ 86%)和日本比目鱼(93%/ 91%)的全长和截短GHR高度相似,与其他I型鱼类GHR(81%)和II型GHR( 58%)。当从鱼类的早期变态到变态后的六个发育阶段,使用定量实时RT-PCR测定法来测量正常和异常变态个体中hhGHR和hhGHRtr mRNA的含量,六个阶段分别是从变态前的早期到变态后,即鱼被视为幼鱼。 hhGHR基因的表达水平在变态开始前的第6阶段和第8阶段最高,然后在变态的高潮和变态后下降。 hhGHRtr的表达在第6阶段达到最高水平,然后下降至变态后。全长和截短的GHR之间的表达比例(hhGHR:hhGHRtr)在各个阶段之间变化,并且在变态开始和变态高潮时最高。放射免疫测定法用于测量整个变态过程中大比目鱼IGF-1的身体含量。 IGF-1从早期变态到变态开始增加,然后向变态后降低。与正常和异常变态的幼体相比,异常鱼的IGF-I含量,hhGHR和hhGHRtr mRNA水平降低。这些数据表明GH-IGF-1系统或者在变态中具有调节作用,或者由于异常变态而受到影响。

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