Duve H, Johnsen A H, Scott A G, Yu C G, Yagi K J, Tobe S S, Thorpe A
School of Biological Sciences, Queen Mary and Westfield College, University of London, United Kingdom.
Proc Natl Acad Sci U S A. 1993 Mar 15;90(6):2456-60. doi: 10.1073/pnas.90.6.2456.
Five neuropeptides with C-terminal amino acid sequence homology to cockroach allatostatins have been identified in the blowfly Calliphora vomitoria. Three have the same pentapeptide C-terminal amino acid sequence as allatostatin 1 of the cockroach Diploptera punctata. A hexadecapeptide designated callatostatin 1, isolated from thoracic ganglia, brains, and heads, has the sequence Asp-Pro-Leu-Asn-Glu-Glu-Arg-Arg-Ala-Asn-Arg-Tyr-Gly-Phe-Gly-Leu-NH2. Callatostatins 2 and 3 have been isolated from heads and thoracic ganglia, respectively; they comprise the last 14 and 8 residues of callatostatin 1. Callatostatin 4, isolated from thoracic ganglia, has the sequence Xaa-Arg-Pro-Tyr-Ser-Phe-Gly-Leu-NH2, where Xaa is either Asp or Asn. This peptide, with a serine substitution for glycine at position 5, has a C-terminal pentapeptide sequence identical to that of allatostatins 3 and 4 of D. punctata. Callatostatin 5, with the sequence Gly-Pro-Pro-Tyr-Asp-Phe-Gly-Met-NH2, was identified from whole flies. All five peptides inhibit juvenile hormone production by the corpora allata of D. punctata in vitro. Callatostatin 5 was the most potent allatostatin so far tested in this species, with maximum inhibition occurring at 1 nM. In contrast, none of the callatostatins or the allatostatins showed allatostatic activity in mature female C. vomitoria when tested at concentrations of 100 to 0.1 microM. In accordance with these results, immunoreactivity to an antiserum directed against the common C terminus of callatostatin 1 and allatostatin 1 was observed in the corpora allata of D. punctata but not in the corpus allatum of C. vomitoria, despite its presence in neurons of the brain. Neurons in the thoracic ganglion of C. vomitoria that are immunoreactive against this antiserum project to the hindgut, rectum, rectal papillae, and oviduct, suggestive of a function different from that of a true allatostatin.
在丽蝇(Calliphora vomitoria)中已鉴定出五种与蟑螂咽侧体抑制素具有C末端氨基酸序列同源性的神经肽。其中三种与斑点折翅蠊(Diploptera punctata)的咽侧体抑制素1具有相同的五肽C末端氨基酸序列。从胸神经节、脑和头部分离出的一种十六肽,命名为callatostatin 1,其序列为Asp-Pro-Leu-Asn-Glu-Glu-Arg-Arg-Ala-Asn-Arg-Tyr-Gly-Phe-Gly-Leu-NH2。Callatostatin 2和3分别从头部和胸神经节中分离得到;它们分别由callatostatin 1的最后14个和8个残基组成。从胸神经节中分离出的Callatostatin 4,其序列为Xaa-Arg-Pro-Tyr-Ser-Phe-Gly-Leu-NH2,其中Xaa为Asp或Asn。该肽在第5位的甘氨酸被丝氨酸取代,其C末端五肽序列与斑点折翅蠊的咽侧体抑制素3和4相同。从整个果蝇中鉴定出序列为Gly-Pro-Pro-Tyr-Asp-Phe-Gly-Met-NH2的Callatostatin 5。所有这五种肽在体外均能抑制斑点折翅蠊咽侧体产生保幼激素。Callatostatin 5是迄今为止在该物种中测试的最有效的咽侧体抑制素,在1 nM时出现最大抑制作用。相比之下,当在100至0.1 microM的浓度下进行测试时,在成熟雌性丽蝇中,这些callatostatin或咽侧体抑制素均未表现出咽侧体抑制活性。根据这些结果,在斑点折翅蠊的咽侧体中观察到了针对callatostatin 1和咽侧体抑制素1的共同C末端的抗血清的免疫反应性,而在丽蝇的咽侧体中未观察到,尽管其在脑神经元中存在。丽蝇胸神经节中对该抗血清具有免疫反应性的神经元投射到后肠、直肠、直肠乳头和输卵管,这表明其功能与真正的咽侧体抑制素不同。