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肝素结合血清蛋白对于保护大鼠空肠切片孵育过程中释放的唾液酸转移酶是必需的。

Heparin-binding serum protein(s) is required for the protection of sialyltransferase released during the incubation of rat jejunal slices.

作者信息

Nadkarni S, Hunt D, Ratnam S, Nagpurkar A, Mookerjea S

机构信息

Department of Biochemistry, Memorial University, St. John's, Newfoundland, Canada.

出版信息

Biochem J. 1991 Dec 15;280 ( Pt 3)(Pt 3):687-93. doi: 10.1042/bj2800687.

Abstract

Incubation of rat jejunal slices in Krebs-Ringer bicarbonate buffer (KRB) required the presence of heat-inactivated horse serum (HHS) in order to show time-dependent release of sialyltransferase into the medium. Sialyltransferase activity could not be detected in the medium when KRB alone or KRB supplemented with either albumin or glycerol was used in the incubations. The viability of the jejunal slices for up to 4 h of incubation was determined by studying the incorporation of glucosamine and leucine into acid-insoluble proteins. Supplementation of KRB with HHS had no beneficial effect on the rate of incorporation of leucine and glucosamine into proteins. KRB medium obtained after different periods of incubation contained higher trypsin-like activity than KRB medium containing HHS. Various antiproteases present as supplements to KRB resulted in the release of sialyltransferase activity from the jejunal slices. Among these antiproteases, alpha 1-proteinase inhibitor (alpha 1-PI) was the most effective. Also, HHS added to KRB immediately following incubation resulted in partial restoration of sialyltransferase activity in the medium, suggesting the presence of anti-proteolytic factors in HHS. The addition of increasing concentrations of heparin to incubations containing HHS caused a decrease in the medium sialyltransferase activity. The heparin-binding fraction (HBF) from HHS, when added to incubations, was able to protect the sialyltransferase released into medium. However, HHS depleted of its heparin-binding fraction by heparin-agarose affinity chromatography was unable to protect the sialyltransferase. HBF was separated into high- and low-molecular-mass fractions (fractions A and B respectively) by gel-filtration chromatography. The capacity to protect the released sialyltransferase was contained in fraction B. Fraction A contained multiple bands on SDS/PAGE and did not protect the enzyme. Fraction B contained a major protein band on the gel which corresponded to the migration of a similar band in human alpha 1-PI. HBF as well as fraction B isolated from HHS showed anti-trypsin-like activity. The results presented indicate that HHS contains a heparin-binding protein(s) similar to human alpha 1-PI which plays a role in the protection of sialyltransferase released from jejunal slices.

摘要

将大鼠空肠切片置于 Krebs - Ringer 碳酸氢盐缓冲液(KRB)中孵育时,需要加入热灭活马血清(HHS),以便观察唾液酸转移酶向培养基中的时间依赖性释放。当单独使用 KRB 或在孵育中添加白蛋白或甘油的 KRB 时,在培养基中检测不到唾液酸转移酶活性。通过研究葡糖胺和亮氨酸掺入酸不溶性蛋白质的情况来确定空肠切片长达 4 小时孵育的活力。在 KRB 中添加 HHS 对亮氨酸和葡糖胺掺入蛋白质的速率没有有益影响。不同孵育时间后获得的 KRB 培养基比含有 HHS 的 KRB 培养基具有更高的类胰蛋白酶活性。作为 KRB 补充剂存在的各种抗蛋白酶导致唾液酸转移酶活性从空肠切片中释放出来。在这些抗蛋白酶中,α1 - 蛋白酶抑制剂(α1 - PI)最有效。此外,孵育后立即向 KRB 中添加 HHS 导致培养基中唾液酸转移酶活性部分恢复,这表明 HHS 中存在抗蛋白水解因子。向含有 HHS 的孵育体系中添加浓度不断增加的肝素会导致培养基中唾液酸转移酶活性降低。来自 HHS 的肝素结合部分(HBF)添加到孵育体系中时,能够保护释放到培养基中的唾液酸转移酶。然而,通过肝素 - 琼脂糖亲和层析去除其肝素结合部分的 HHS 无法保护唾液酸转移酶。通过凝胶过滤层析将 HBF 分离为高分子量和低分子量部分(分别为 A 部分和 B 部分)。保护释放的唾液酸转移酶的能力存在于 B 部分。A 部分在 SDS/PAGE 上含有多条带,不能保护该酶。B 部分在凝胶上含有一条主要蛋白带,其迁移情况与人α1 - PI 中的一条类似带相对应。从 HHS 中分离出的 HBF 以及 B 部分均显示出类抗胰蛋白酶活性。所呈现的结果表明,HHS 含有一种与人α1 - PI 类似的肝素结合蛋白,它在保护从空肠切片释放的唾液酸转移酶中起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/973c/1130508/d4de445d0dd3/biochemj00145-0131-a.jpg

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