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犬肠道提取物中无硫酸化胆囊收缩素-58的鉴定及其生物学特性。

Identification of nonsulfated cholecystokinin-58 in canine intestinal extracts and its biological properties.

作者信息

Reeve Joseph R, Liddle Rodger A, McVey Douglas C, Vigna Steven R, Solomon Travis E, Keire David A, Rosenquist Grace, Shively John E, Lee Terry D, Chew Peter, Green Gary M, Coskun Tamer

机构信息

CURE: Digestive Diseases Research Center, Bldg. 115, Rm. 115, VA Greater Los Angeles Health Care, Los Angeles, CA 90073, USA.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2004 Aug;287(2):G326-33. doi: 10.1152/ajpgi.00520.2003. Epub 2004 Apr 2.

DOI:10.1152/ajpgi.00520.2003
PMID:15064233
Abstract

Nonsulfated CCK(58) [CCK(58)(ns)] has not been considered to be of biological importance because CCK(58)(ns) binds poorly to the CCK(A) receptor and has only been identified once in intestinal extracts. In this work, a radioimmunoassay specific for the COOH-terminal region of gastrin and CCK (antibody 5135) was used to monitor the purification of CCK molecular forms from canine intestinal extracts. A minor immunoreactive peak was associated with a major absorbance peak during an ion-exchange, HPLC step. Characterization of this minor immunoreactive peak demonstrated that it was CCK(58)(ns). CCK(58)(ns) is 14% as immunoreactive as sulfated CCK(8) [CCK(8)(s)]. Amino acid analysis demonstrated that CCK(58)(ns) was present at 50% the amount of CCK(58)(s). In addition, we found that CCK(58)(ns) does not potently displace an (125)I-labeled CCK(10) analog from the CCK(A) receptor in mouse pancreatic membranes and does not stimulate amylase release from isolated pancreatic acini, or stimulate pancreatic secretion in an anesthetized rat model. By contrast, CCK(58)(ns) does bind to CCK(B) receptors and stimulates gastric acid secretion via this receptor. The presence of CCK(58)(ns) and its ability to selectively stimulate the CCK(B) receptor without stimulation of the CCK(A) receptor suggest that CCK(58)(ns) may have unique physiological properties, especially tissues where the nonsulfated peptide can act as a paracrine or neurocrine agent.

摘要

非硫酸化的胆囊收缩素(58)[CCK(58)(ns)]一直未被认为具有生物学重要性,因为CCK(58)(ns)与CCK(A)受体的结合能力较差,且仅在肠道提取物中被鉴定过一次。在本研究中,使用一种针对胃泌素和胆囊收缩素COOH末端区域的放射免疫分析法(抗体5135)来监测从犬肠道提取物中纯化胆囊收缩素分子形式的过程。在离子交换高效液相色谱步骤中,一个较小的免疫反应峰与一个主要的吸光度峰相关。对这个较小的免疫反应峰的表征表明它是CCK(58)(ns)。CCK(58)(ns)的免疫反应性是硫酸化胆囊收缩素(8)[CCK(8)(s)]的14%。氨基酸分析表明,CCK(58)(ns)的含量是CCK(58)(s)的50%。此外,我们发现CCK(58)(ns)不能有效地从小鼠胰腺膜上的CCK(A)受体上置换出(125)I标记的CCK(10)类似物,也不能刺激分离的胰腺腺泡释放淀粉酶,或在麻醉大鼠模型中刺激胰腺分泌。相比之下,CCK(58)(ns)确实能与CCK(B)受体结合,并通过该受体刺激胃酸分泌。CCK(58)(ns)的存在及其选择性刺激CCK(B)受体而不刺激CCK(A)受体的能力表明,CCK(58)(ns)可能具有独特的生理特性,特别是在非硫酸化肽可以作为旁分泌或神经分泌因子发挥作用的组织中。

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