11 resultados para GnRH

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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193头健康、经产的黑白花奶牛分为3个组,用3种不同的方法进行同期发情处理和胚胎移植。第1组:注射1次Lutalyse;第2组:注射2次Lutalyse;第3组:注射Fertagyl-Lutalyse-Fertagyl。结果表明:第1组和第2组之间的同期发情胚胎移植率无显著差异(P>0.05),分别为26.5%(21/79)和27.0%(18/68);第3组的同期发情胚胎移植率为60.9%(28/46),显著高于第1组和第2组(P<0.05)。

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促性腺激素释放激素(GnRH)是在调控脊椎动物性腺发育和最后性成熟中起至关重要作用的一个保守神经十肽家族.从mGnRH被证实以来,已经从原索动物和脊椎动物神经组织中发现16种不同形式的GnRH肽.在已研究的脊椎动物中,cGnRH-Ⅱ肽在所有脊椎动物脑组织中存在并完全保守,然而发挥主要功能作用的一般都是在下丘脑和端脑中优势表达的种属特异性GnRH肽.与脑组织中存在多种类型GnRH肽相对应的是,在部分脊椎动物的垂体促性腺激素细胞膜上发现多种亚型的GnRH受体(GnRH-R).GnRH基因或GnRH-R的缺失或

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Gonadotropin-releasing hormone (GnRH) is a conservative neurodecapeptide family, which plays a crucial role in regulating the gonad development and in controlling the final sexual maturation in vertebrate. Two differing cGnRH-II cDNAs of common carp, namely cGnRH-II cDNA1 and cDNA2, were firstly cloned from the brain by rapid amplification of cDNA end (RACE) and reverse transcription- polymerase chain reaction (RT-PCR). The length of cGnRH-II cDNA1 and cDNA2 was 622 and 578 base pairs (bp), respectively. The cGnRH-II precursors encoded by two cDNAs consisted of 86 amino acids, including a signal peptide, cGnRH-II decapeptide and a GnRH-associated peptide (GAP) linked by a Gly-Lys-Arg proteolytic site. The results of intron trapping and Southern blot showed that two differing cGnRH-II genes in common carp genome were further identified, and that two genes might exist as a single copy. The multi-gene coding of common carp cGnRH-II gene offered novel evidence for gene duplication hypothesis. Using semi-quantitative RT-PCR, expression and relative expression levels of cGnRH-II genes were detected in five dissected brain regions, pituitary and gonad of common carp. With the exception of no mRNA2 in ovary, two cGnRH-II genes could be expressed in all the detected tissues. However, expression levels showed an apparent difference in different brain regions, pituitary and gonad. According to the expression characterization of cGnRH-II genes in brain areas, it was presumed that cGnRH-II might mainly work as the neurotransmitter and neuromodulator and also operate in the regulation for the GnRH releasing. Then, the expression of cGnRH-II genes in pituitary and gonad suggested that cGnRH-II might act as the autocrine or paracrine regulator.

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用无血清培养技术研究表明: 幼龄和成年恒河猴颗粒细胞在离体下都能对人FSH、环-AMP、FK和GnRH类似物产生反应, 明显增加孕酮和雌激素的产生; hCG能够促进FSH刺激幼猴和年猴颗粒细胞增加孕酮的产生; 在培液中加入DES明显增加FSH刺激孕酮和雌激素产生的效应; 在缺少雌性激素底物的情况下, 猴壳粒细胞也能合成可测量的雌激素。图7参21

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Sertoli cells play a central role in the control and maintenance of spermatogenesis. Isolated Sertoli cells of mouse and rat testes have been shown to secrete plasminogen activator (PA) and a plasminogen activator inhibitor type-1 (PAI-1) in culture. In this study, we have investigated the hormonal regulation of PA and PAI-1 activities in cultured monkey Sertoli cells. Sertoli cells (5x10(5) cells/well) isolated from infant rhesus monkey testes were preincubated at 35 degrees C for 16 h in 24-well plates precoated with poly(D-lysine) (5 mu g/cm(2)) in 0.5 mi McCoy's 5a medium containing 5% of fetal calf serum and further incubated for 48 h in 0.5 mi serum-free medium with or without various hormones or other compounds, PA as well as PAI-1 activities in the conditioned media were assayed by fibrin overlay and reverse fibrin autography techniques respectively. The Sertoli cells in vitro secreted only tissue-type PA (tPA), no detectable amount of urokinase-type PA (uPA) could be observed, Monkey Sertoli cells were also capable of secreting PAI-1, Immunocytochemical studies indicated that both tPA and PAI-1 positive staining localized in the Sertoli cells, spermatids and residual bodies of the seminiferous epithelium; Northern blot analysis further confirmed the presence of both tPA and PAI-1 mRNA in monkey Sertoli cells. Addition of follicle-stimulating hormone (FSH) or cyclic adenosine monophosphate (cAMP) derivatives or cAMP-generating agents and gonadotrophin-releasing hormone (GnRH) agonist or phorbol ester (PMA) to the cell culture significantly increased tPA activity. PAI-1 activity in the culture was also enhanced by these reagents except 8-bromo-dibutyryl-cAMP, forskolin and 3-isobutyl-1-methylxanthin (MIX) which greatly stimulated tPA activity, whereas decreased PAI-1 activity, implying that neutralization of PAI-1 activity by tile high level of tPA in the conditioned media may occur. These data suggest that increased intracellular signals which activate protein kinase A (PKA), or protein kinase C (PKC) can modulate Sertoli cell tPA and PAI-1 activities, The concomitant induction of PA and PAI-1 by the same reagents in the Sertoli cells may reflect a finely tuned regulatory mechanism in which PAI-1 could limit the excession of the proteolysis.

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采用RT-PCR的方法,以不同发育时期的鲤鱼胚胎和幼鱼为材料,研究了与鱼类生殖相关的HPG轴以及与生长相关的GH/IGF轴中GnRH、GtH以及GH、GHR和IGF重要信号分子的转录起始特征。结果显示,sGnRH、cGnRH、GtH-Iβ亚基和GHR于鲤鱼胚胎受精后20h开始转录,IGF-1于受精后23h开始转录,GtH-IIβ亚基于受精后26h开始转录,GtHα亚基于受精后46h开始转录,GH于1dph(孵出后第1天)开始转录。其中,GHR和IGF-1均早于GH开始转录,GtHα亚基和β亚基的转录起始时

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促性腺激素释放激素(Gonadotropin-releasing hormone,GnRH)是一个保守的十肽神经家族激素,在脊椎动物的性腺发育和繁殖功能的维持方面起着重要的调控作用。本文通过运用RACE和RT-PCR方法,从黄鳝脑组织中克隆得到cGnRH-ⅡcDNA全序列,其核苷酸序列长度为617bp。该cDNA编码的cGnRH-Ⅱ的前体氨基酸序列结构组成与其他物种的cGnRH-Ⅱ前体结构一致,其推导的蛋白前体长度为83个氨基酸,包括一个信号肽、cGnRH-Ⅱ十肽和一个由蛋白水解位点(Gly-Lys-Ar

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性腺是脊椎动物精卵发生的场所,是生命繁衍的关键器官.本文评述了通过调控特定基因表达与鱼类性腺发育,培育性腺发育被完全抑制的转反义GnRH基因鲤鱼、特异剔除鱼类性腺中的转植基因以及在鱼类性腺中特异表达外源基因的研究进展,认为鱼类性腺有望发展成为一种实施生物技术操纵的新型载体,并探讨了鱼类性腺发育调控在转基因鱼的遗传生态安全对策研究以及新型生物反应器的研制等方面的应用前景.

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促性腺激素释放激素(GnRH)是一个保守的神经十肽家族,在调节脊椎动物的性腺发育和控制性成熟中起至关重要的作用.用RACE和RT-PCR方法,从鲤鱼脑组织克隆得到两个差异的cGnRH-Ⅱ cDNAs序列,其长度分别为622,578 bp.两个cDNA编码的cGnRH-Ⅱ前体均为86个氨基酸,包括一个信号肽、cGnRH-Ⅱ十肽和一个由蛋白水解位点(Gly-Lys-Arg)连接的GnRH相关肽.内含子捕获和Southern杂交证实鲤鱼基因组中有两个cGnRH-Ⅱ编码基因,且两个基因都可能以单拷贝形式存在.鲤鱼

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采用RACE方法 ,从鲤鱼脑组织克隆了两个差异的sGnRH(salmonGnRH ,[Trp7Leu8]GnRH)cDNAs ,即cDNA1和cDNA2 ,其长度分别为 393和 4 78bp。两个cDNAs都包括一个 2 85bp开放阅读框 ,编码的sGnRH前体为 94个氨基酸残基 ,由一个信号肽、sGnRH十肽和一个由蛋白水解位点 (Gly Lys Arg)连接的促性腺激素释放激素相关肽共 3部分组成。用内含子捕获得到相应的两个差异sGnRH基因 ,即sGnRHgene1和 gene2 ,其基本结构

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Generating transgenic fish with desirable traits (e.g., rapid growth, larger size, etc.) for commercial use has been hampered by concerns for biosafety and competition if these fish are released into the environment. These obstacles may be overcome by producing transgenic fish that are sterile, possibly by inhibiting hormones related to reproduction. In vertebrates, synthesis and release of gonadotropin (GtH) and other reproductive hormones is mediated by gonadotropin-releasing hormone (GnRH). Recently two cDNA sequences encoding salmon-type GnRH (sGnRH) decapeptides were cloned from common carp (Cyprinus carpio). This study analyzed the expression of these two genes using real-time polymerase chain reaction (RT-PCR) in different tissues carp at varying developmental stages. Transcripts of both genes were detected in ovary and testis in mature and regressed, but not in juvenile carp. To evaluate the effects of sGnRH inhibition, the recombinant gene CAsGnRHpc-antisense, expressing antisense sGnRH RNA driven by a carp beta-actin promoter, was constructed. Blocking sGnRH expression using antisense sGnRH significantly decreased GtH in the blood of male transgenic carp. Furthermore, some antisense transgenic fish had no gonadal development and were completely sterile. These data demonstrate that sGnRH is important for GtH synthesis and development of reproductive organs in carp. Also, the antisense sGnRH strategy may prove effective in generating sterile transgenic fish, eliminating environmental concerns these fish may raise. (c) 2007 Published by Elsevier B.V.