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杆状病毒表达的人肝脏羧酸酯酶的糖基化依赖性活性:两种高度相似酶形式的cDNA克隆与特性分析

Glycosylation-dependent activity of baculovirus-expressed human liver carboxylesterases: cDNA cloning and characterization of two highly similar enzyme forms.

作者信息

Kroetz D L, McBride O W, Gonzalez F J

机构信息

Laboratory of Molecular Carcinogenesis, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Biochemistry. 1993 Nov 2;32(43):11606-17. doi: 10.1021/bi00094a018.

Abstract

A cDNA, designated hCE, encoding the entire sequence of a carboxylesterase, was isolated from a human liver lambda gt11 library. The hCE-deduced protein sequence contained 568 amino acids, including an 18 amino acid signal peptide sequence, and had a calculated molecular mass of the mature protein of 60,609 Da. A second cDNA, designated hCEv, was isolated from the same lambda gt11 library and contained a 3-bp deletion resulting in the loss of the final amino acid in the signal peptide sequence (Ala-1) and a second 3-bp deletion leading to an in-frame loss of Gln345. Expression of mRNA corresponding to both hCE and hCEv was detected in eight adult human liver samples, with individual levels varying 5-fold (hCE) and 12-fold (hCEv). A single immunoreactive protein was detected in 13 adult human liver samples when probed with antibody directed against a rat carboxylesterase. Based on allele-specific oligonucleotide hybridizations, we believe that the hCE and hCEv cDNAs represent two distinct members of the carboxylesterase family. The carboxylesterase genes were localized to human chromosome 16 using a somatic cell hybrid mapping strategy. Baculovirus expression of hCE in Sf9 cells produced a protein with an estimated molecular mass of 59,000 Da. This enzyme was able to hydrolyze aromatic and aliphatic esters but possessed no catalytic activity toward amides or a fatty acyl CoA ester. Baculovirus-mediated expression of the hCEv cDNA yielded a second protein of 56,000 Da resulting from inefficient N-glycosylation of the hCEv protein. Although the substrate specificity for the hCEv protein was identical to that of expressed hCE for any given substrate, the specific activity for the hCE protein was always higher than that for the hCEv protein. Tunicamycin inhibition studies provided the first evidence that N-glycosylation of these luminal enzymes is essential for maximal catalytic activity.

摘要

从人肝脏λgt11文库中分离出一个名为hCE的cDNA,它编码一种羧酸酯酶的完整序列。hCE推导的蛋白质序列包含568个氨基酸,其中包括一个18个氨基酸的信号肽序列,成熟蛋白的计算分子量为60,609道尔顿。从同一个λgt11文库中分离出第二个cDNA,命名为hCEv,它有一个3个碱基对的缺失,导致信号肽序列中的最后一个氨基酸(丙氨酸-1)丢失,还有第二个3个碱基对的缺失,导致第345位谷氨酰胺在阅读框内丢失。在8个成人肝脏样本中检测到与hCE和hCEv相对应的mRNA表达,个体水平变化分别为5倍(hCE)和12倍(hCEv)。用针对大鼠羧酸酯酶的抗体检测13个成人肝脏样本时,检测到一种单一的免疫反应性蛋白。基于等位基因特异性寡核苷酸杂交,我们认为hCE和hCEv cDNA代表羧酸酯酶家族的两个不同成员。采用体细胞杂种定位策略,将羧酸酯酶基因定位到人类16号染色体上。hCE在Sf9细胞中的杆状病毒表达产生了一种估计分子量为59,000道尔顿的蛋白质。这种酶能够水解芳香族和脂肪族酯,但对酰胺或脂肪酰辅酶A酯没有催化活性。杆状病毒介导的hCEv cDNA表达产生了第二种分子量为56,000道尔顿的蛋白质,这是由于hCEv蛋白的N-糖基化效率低下所致。尽管对于任何给定的底物,hCEv蛋白的底物特异性与表达的hCE相同,但hCE蛋白的比活性总是高于hCEv蛋白。衣霉素抑制研究首次证明这些腔内酶的N-糖基化对于最大催化活性至关重要。

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