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人葡萄糖脑苷脂酶cDNA在体外和体内的高效表达。

Efficient in vitro and in vivo expression of human glucocerebrosidase cDNA.

作者信息

Reiner O, Wilder S, Givol D, Horowitz M

出版信息

DNA. 1987 Apr;6(2):101-8. doi: 10.1089/dna.1987.6.101.

Abstract

A human glucocerebrosidase cDNA clone was isolated from a human chronic myelogenous leukemia (line K562) cDNA library using a 36-nucleotide-long synthetic probe (GC-36). The 2.4-kb cDNA contains 184 bp of 5' nontranslated sequences, the complete coding region, and 546 bp of 3' nontranslated sequences followed by 100 bp of poly(A). A primer extension experiment indicated that the cDNA is at least 51 bp shorter than the mRNA at the 5' end. In normal human placenta as well as in fibroblasts from Gaucher's disease patients, a major mRNA species of 2.6 kb hybridizes with the cDNA probe. The amounts of the glucocerebrosidase mRNA in normal placenta and Gaucher's cells are comparable. The cDNA was linked to the SP6 promoter and transcribed in vitro. The resultant RNA, when translated in a cell-free system, yielded a polypeptide of 55 kD, which is the size expected from the coding sequence. The cDNA was inserted into an SV40 shuttle vector, under the transcription control of the SV40 early promoter. COS-M6 cells were transfected with this construct and the biological activity of the cDNA was assayed by monitoring the increase in glucocerebrosidase activity, using 4-methyl umbiliferyl glucopyranoside as a substrate. There was a two- to three-fold increase in enzymatic activity in the transfected cells, compared to nontransfected cells. These results prove the authenticity of the glucocerebrosidase cDNA and provide the basis for experiments to understand the nature of the genetic alterations responsible for Gaucher's disease.

摘要

利用一个36个核苷酸长的合成探针(GC - 36),从人慢性粒细胞白血病(K562系)cDNA文库中分离出一个人葡萄糖脑苷脂酶cDNA克隆。这个2.4kb的cDNA包含184bp的5'非翻译序列、完整的编码区以及546bp的3'非翻译序列,后面接着100bp的聚腺苷酸。引物延伸实验表明,该cDNA在5'端比mRNA至少短51bp。在正常人胎盘以及戈谢病患者的成纤维细胞中,一种2.6kb的主要mRNA与该cDNA探针杂交。正常胎盘和戈谢细胞中葡萄糖脑苷脂酶mRNA的量相当。将该cDNA与SP6启动子连接并进行体外转录。所得RNA在无细胞系统中翻译时,产生了一个55kD的多肽,这是编码序列预期的大小。将该cDNA插入到一个SV40穿梭载体中,置于SV40早期启动子的转录控制之下。用这个构建体转染COS - M6细胞,并以4 - 甲基伞形酮基吡喃葡萄糖苷为底物,通过监测葡萄糖脑苷脂酶活性的增加来测定该cDNA的生物学活性。与未转染的细胞相比,转染细胞中的酶活性增加了两到三倍。这些结果证明了葡萄糖脑苷脂酶cDNA的真实性,并为了解导致戈谢病的基因改变的性质的实验提供了基础。

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