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海兔中产卵激素相关前体的蛋白水解加工。对生物活性至关重要的肽区域的鉴定。

Proteolytic processing of egg-laying hormone-related precursors in Aplysia. Identification of peptide regions critical for biological activity.

作者信息

Nagle G T, Painter S D, Blankenship J E, Kurosky A

机构信息

Marine Biomedical Institute, University of Texas Medical Branch, Galveston 77550.

出版信息

J Biol Chem. 1988 Jul 5;263(19):9223-37.

PMID:3379066
Abstract

The atrial gland of the marine mollusk Aplysia californica is an exocrine organ that expresses at least three genes belonging to the egg-laying hormone (ELH) family. In order to study the post-translational processing of the ELH-related gene products in the atrial gland and how it compares to the bag cells, peptides were isolated from the atrial gland and chemically characterized. The A- and B-related precursors were each cleaved in vivo to yield several major and minor peptides including peptides A and B and the ELH-related peptide complexes that caused egg laying. About 13% of the peptide complexes were further enzymically processed by the atrial gland to yield smaller fragments, which included A-AP.A-ELH-(15-36), A-AP.[Ala27]A-ELH-(15-36), and A-AP.[Gln23,Ala27]A-ELH-(16-36), where A-AP is an acidic peptide encoded by the A- and B-related genes and A-ELH is an ELH-related peptide encoded by the A gene. These processed peptide fragments were not active in an egg-laying bioassay, indicating that retention of the 14-residue NH2-terminal segment of the A-ELH-related sequence, or some portion thereof, was critical for the induction of egg laying. Other characterized peptides included two novel 13-residue NH2-terminal peptides, A-NTP and B-NTP, representing residues 22-34 of the A and B precursors, respectively. These two peptides occurred adjacent to the signal peptide region in each precursor, and their characterization established the site of signal peptide cleavage to be the Ser21-Gln22 peptide bond of each precursor. Intermediate peptide fragments (A-NTP-peptide A and B-NTP-peptide B) were also identified indicating that there was a specific ordering in the cleavage of peptide bonds during posttranslational processing. Finally, a new 55-residue atrial gland peptide was also isolated that was not a part of any ELH-related precursor characterized to date.

摘要

海兔(加州海兔)的心房腺是一种外分泌器官,它表达至少三种属于产卵激素(ELH)家族的基因。为了研究心房腺中ELH相关基因产物的翻译后加工过程,以及它与袋状细胞的比较情况,从心房腺中分离出肽段并进行化学表征。A相关和B相关前体在体内各自被切割,产生几种主要和次要的肽段,包括肽段A和B以及导致产卵的ELH相关肽复合物。约13%的肽复合物被心房腺进一步酶解加工,产生更小的片段,其中包括A-AP.A-ELH-(15 - 36)、A-AP.[Ala27]A-ELH-(15 - 36)和A-AP.[Gln23,Ala27]A-ELH-(16 - 36),其中A-AP是由A相关和B相关基因编码的酸性肽,A-ELH是由A基因编码的ELH相关肽。这些加工后的肽片段在产卵生物测定中无活性,表明保留A-ELH相关序列的14个残基的NH2末端片段或其某些部分对于诱导产卵至关重要。其他已表征的肽包括两种新的13个残基的NH2末端肽,A-NTP和B-NTP,分别代表A和B前体的22 - 34位残基。这两种肽在每个前体中与信号肽区域相邻,它们的表征确定信号肽切割位点为每个前体的Ser21 - Gln22肽键。还鉴定出中间肽片段(A-NTP-肽段A和B-NTP-肽段B),表明在翻译后加工过程中肽键切割存在特定顺序。最后,还分离出一种新的55个残基的心房腺肽,它不是迄今为止所表征的任何ELH相关前体的一部分。

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