首页> 外文期刊>Peptides: An International Journal >Peptidergic control of egg-laying in the cephalopod Sepia officinalis: involvement of FMRFamide and FMRFamide-related peptides.
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Peptidergic control of egg-laying in the cephalopod Sepia officinalis: involvement of FMRFamide and FMRFamide-related peptides.

机译:头足类乌贼墨中产卵的前肽能控制:涉及FMRFamide和FMRFamide相关肽。

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摘要

The peptidergic control of egg-laying was investigated in Sepia officinalis by using a myotropic bioassay. Three myotropic high-performance liquid chromatography fractions were obtained from optic lobe extracts. In the first fraction, FMRFamide (FMRFa) and FLRFa were isolated and sequenced. FMRFa-related peptides then were sought by dotting immunobinding of optic lobes extracts. The four immunoreactive fractions detected revealed the occurrence of FMRFa, FLRFa, FIRFa, and ALSGDAFLRFa predicted by the precursor already cloned from the optic lobes of S. officinalis (J Exp Biol 200:1483-9;1997). These peptides clearly appeared to be involved in the regulation of oocyte transport through the oviduct: the tetrapeptides FMRFa and FLRFa stimulated the contractions, whereas FIRFa and ALSGDAFLRFa lowered the tonus, the frequency, and the amplitude of the contractions. The occurrence of FaRPs in the nervous endings of the accessory sex glands suggested that this peptide family is involved in the regulation of secretory processes of the egg capsule. Indeed, FMRFa modulates the contractions of the main nidamental glands in vitro and, thus, should induce mechanical release of the secretion in vivo during ovulation. These results show that the FaRPs could play an important role in the synchronization of ovulation and egg capsule coating.
机译:乌贼墨中使用促肌生物测定法研究了产卵的肽能控制。从视神经叶提取物中获得了三种肌营养高效液相色谱馏分。在第一部分中,分离并测序了FMRFamide(FMRFa)和FLRFa。然后通过点缀视裂叶提取物的免疫结合来寻找与FMRFa相关的肽。检测到的四个免疫反应性级分揭示了由已经从山茱off的视球克隆的前体预测的FMRFa,FLRFa,FIRFa和ALSGDAFLRFa的发生(J Exp Biol 200:1483-9; 1997)。这些肽显然似乎参与了通过输卵管的卵母细胞转运的调节:四肽FMRFa和FLRFa刺激了收缩,而FIRFa和ALSGDAFLRFa降低了张力,收缩的频率和幅度。 FaRPs在副性腺神经末梢的出现表明该肽家族参与卵囊分泌过程的调节。实际上,FMRFa在体外调节主要的腺体腺的收缩,因此应在排卵过程中诱导体内分泌物的机械释放。这些结果表明,FaRPs在排卵和卵囊包衣的同步过程中可能起重要作用。

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