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大肠杆菌K-12主要外膜蛋白a(3b)的编码基因omp T调控区序列:对调控与加工的意义

Sequence of the regulatory region of omp T, the gene specifying major outer membrane protein a (3b) of Escherichia coli K-12: implications for regulation and processing.

作者信息

Gordon G, Gayda R C, Markovitz A

出版信息

Mol Gen Genet. 1984;193(3):414-21. doi: 10.1007/BF00382077.

Abstract

The DNA of the promoter region of omp T, including the putative start for the pro-Omp T protein (pro-protein a), has been sequenced. Previous studies showed that trypsin inhibitors prevent the processing of pro-Omp T to Omp T protein which led to the prediction that the processing site would be a lysine or an arginine. The deduced amino acid sequence contains a lysine at amino acid 12 and an arginine at amino acid 17 from the N terminus. Chou-Fassman analysis would predict processing at the lysine (but not the arginine) to remove a 1389 dalton peptide, consistent with the fact that the estimated molecular masses of pro-Omp T and Omp T are 42 kd and 40 kd respectively. In addition, the predicted mRNA of the promoter region can form a stable secondary structure (-17.1 kcal) that sequesters the Shine-Dalgarno (SD) sequence as well as the initiator AUG codon. There is evidence that the per A (tpo, envZ) gene product is required for synthesis of Omp T protein (as well as several outer membrane and periplasmic proteins). The perA gene product could be activating translation of Omp T protein by disrupting the mRNA secondary structure that sequesters the SD sequence. Omp T protein synthesis is reduced at temperatures below 32 degrees C and this may also be related to the greater stability of the sequestered SD sequence of the mRNA at low temperature.

摘要

omp T启动子区域的DNA,包括前Omp T蛋白(前体蛋白a)的假定起始位点,已被测序。先前的研究表明,胰蛋白酶抑制剂可阻止前Omp T加工成Omp T蛋白,由此推测加工位点可能是赖氨酸或精氨酸。推导的氨基酸序列在N端第12位氨基酸处含有一个赖氨酸,在第17位氨基酸处含有一个精氨酸。Chou-Fassman分析预测在赖氨酸处(而非精氨酸处)进行加工,以去除一个1389道尔顿的肽段,这与前Omp T和Omp T的估计分子量分别为42 kd和40 kd这一事实相符。此外,启动子区域预测的mRNA可形成稳定的二级结构(-17.1千卡),该结构会隔离Shine-Dalgarno(SD)序列以及起始AUG密码子。有证据表明,per A(tpo,envZ)基因产物是Omp T蛋白(以及几种外膜和周质蛋白)合成所必需的。perA基因产物可能通过破坏隔离SD序列的mRNA二级结构来激活Omp T蛋白的翻译。在低于32摄氏度的温度下,Omp T蛋白的合成会减少,这也可能与低温下mRNA隔离的SD序列具有更高的稳定性有关。

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