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首页> 外文期刊>The Biochemical Journal >Crustacean hyperglycaemic hormone (CHH)-like peptides and CHH-precursor-related peptides from pericardial organ neurosecretory cells in the shore crab, Carcinus maenas, are putatively spliced and modified products of multiple genes
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Crustacean hyperglycaemic hormone (CHH)-like peptides and CHH-precursor-related peptides from pericardial organ neurosecretory cells in the shore crab, Carcinus maenas, are putatively spliced and modified products of multiple genes

机译:来自岸蟹心cin的心包器官神经分泌细胞的甲壳类高血糖激素(CHH)样肽和CHH前体相关肽是多种基因的假定剪接和修饰产物

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About 24 intrinsic neurosecretory neurons within the pericardial organs (POs) of the crab Carcinus maenas produce a novel crustacean hyperglycaemic hormone (CHH)-like peptide (PO-CHH) and two CHH-precursor-related peptides (PO-CPRP I and II) as identified immunochemically and by peptide chemistry. Edman sequencing and MS revealed PO-CHH as a 73 amino acid peptide (8630 Da) with a free C-terminus, PO-CHH and sinus gland CHH (SG-CHH) share an identical N-terminal sequence, positions 1-40, but the remaining sequence, positions 41-73 or 41-72, differs considerably. PO-CHH may have different precursors, as cDNA cloning of PO-derived mRNAs has revealed several similar forms, one exactly encoding the peptide. All PO-CHH cDNAs contain a nucleotide stretch coding fur the SG-CHH41-76 sequence in the 3'-untranslated region (UTR). Cloning of crab testis genomic DNA revealed at least four CHH genes, the structure of which suggest that PO-CHH and SG-CHH arise by alternative splicing of precursors acid possibly post-transcriptional modification of PO-CHH. The genes encode four exons, separated by three variable introns, encoding part of a signal peptide (exon I), the remaining signal peptide residues. a CPRP, the PO-CHH1-40/SG-CHH1-40 sequences (exon II), the remaining PO-CHH residues (exon III) and the remaining SG-CHH residues acid a 3'-UTR (exon IV), Precursor and gene structures are more closely related to those encoding related insect ion-transport peptides than to penaeid shrimp CHH genes. PO-CHH neither exhibits hyperglycaemic activity in vivo, nor does it inhibit Y-organ ecdysteroid synthesis in vitro. From the morphology of the neurons it seems likely that novel functions remain to be discovered. [References: 50]
机译:蟹Car的心包器官(POs)内约24个内在神经分泌神经元产生一种新型甲壳类高血糖激素(CHH)样肽(PO-CHH)和两个CHH前体相关肽(PO-CPRP I和II)通过免疫化学和肽化学鉴定。埃德曼(Edman)测序和质谱分析显示,PO-CHH是一个73个氨基酸的肽段(8630 Da),带有一个游离C端,PO-CHH和窦腺CHH(SG-CHH)具有相同的N端序列,位置1-40但是其余的序列(位置41-73或41-72)相差很大。 PO-CHH可能具有不同的前体,这是因为PO衍生的mRNA的cDNA克隆显示出几种相似的形式,其中一种正好编码该肽。所有PO-CHH cDNA在3'-非翻译区(UTR)中均包含一个编码SG-CHH41-76序列的核苷酸延伸序列。蟹睾丸基因组DNA的克隆揭示了至少四个CHH基因,其结构表明PO-CHH和SG-CHH通过前体酸的选择性剪接产生,可能是PO-CHH的转录后修饰。这些基因编码四个外显子,由三个可变内含子隔开,编码一部分信号肽(外显子I),其余为信号肽残基。 CPRP,PO-CHH1-40 / SG-CHH1-40序列(外显子II),剩余的PO-CHH残基(外显子III)和剩余的SG-CHH残基对3'-UTR(外显子IV)酸,前体基因结构与编码相关昆虫离子转运肽的基因相比,与对虾CHH基因的关系更紧密。 PO-CHH在体内既不显示高血糖活性,也不在体外抑制Y-器官蜕皮类固醇合成。从神经元的形态看,似乎仍有可能发现新功能。 [参考:50]

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