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利用基因融合研究麦芽糖结合蛋白向大肠杆菌周质的分泌。

Use of gene fusion to study secretion of maltose-binding protein into Escherichia coli periplasm.

作者信息

Bassford P J, Silhavy T J, Beckwith J R

出版信息

J Bacteriol. 1979 Jul;139(1):19-31. doi: 10.1128/jb.139.1.19-31.1979.

Abstract

We have employed the technique of gene fusion to fuse the LacZ gene encoding the cytoplasmic enzyme beta-galactosidase with the malE gene encoding the periplasmic maltose binding protein (MBP). Strains were obtained which synthesize malE-lacZ hybrid proteins of various sizes. These proteins have, at their amino terminus, a portion of the MBP and at their carboxyl terminus, enzymatically active beta-galactosidase. When the hybrid protein includes only a small, amino-terminal portion of the MBP, the hybrid protein residues in the cytoplasm. When the hybrid protein contains enough of the MBP to include an intact MBP signal sequence, a significant portion of the hybrid protein is found in the cytoplasmic membrane, suggesting that secretion of the hybrid protein has been initiated. However, in no case is the hybrid protein secreted into the periplasm, even when the hybrid protein includes almost the entire MBP. In the latter case, the synthesis and attempted export of the hybrid protein interferes with the export of at least certain normal envelope proteins, which accumulate in the cell in their precursor forms, and the cell dies. These results suggest that a number of envelope proteins may be exported at a common site, and that there are only a limited number of such sites. Also, these results indicate that it is not sufficient to simply attach an amino-terminal signal sequence to a polypeptide to assure its export.

摘要

我们运用基因融合技术,将编码胞质酶β-半乳糖苷酶的LacZ基因与编码周质麦芽糖结合蛋白(MBP)的malE基因融合。获得了能合成各种大小的malE-lacZ杂合蛋白的菌株。这些蛋白在其氨基末端有一部分MBP,在其羧基末端有酶活性的β-半乳糖苷酶。当杂合蛋白仅包含MBP的一个小的氨基末端部分时,杂合蛋白残留在细胞质中。当杂合蛋白包含足够的MBP以包含完整的MBP信号序列时,在细胞质膜中发现了相当一部分杂合蛋白,这表明杂合蛋白的分泌已经启动。然而,无论哪种情况,杂合蛋白都不会分泌到周质中,即使杂合蛋白几乎包含了整个MBP。在后一种情况下,杂合蛋白的合成和试图输出会干扰至少某些正常包膜蛋白的输出,这些蛋白以前体形式在细胞中积累,细胞死亡。这些结果表明,许多包膜蛋白可能在一个共同的位点输出,并且这样的位点数量有限。此外,这些结果表明,仅仅在多肽上连接一个氨基末端信号序列不足以确保其输出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb50/216822/7e41c15d49d1/jbacter00278-0034-a.jpg

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