首页> 美国卫生研究院文献>Journal of Bacteriology >Export of maltose-binding protein species with altered charge distribution surrounding the signal peptide hydrophobic core in Escherichia coli cells harboring prl suppressor mutations.
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Export of maltose-binding protein species with altered charge distribution surrounding the signal peptide hydrophobic core in Escherichia coli cells harboring prl suppressor mutations.

机译:在携带prl抑制子突变的大肠杆菌细胞中出口的麦芽糖结合蛋白种类带有改变的电荷分布这些信号分布在信号肽疏水核心周围。

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摘要

It is believed that one or more basic residues at the extreme amino terminus of precursor proteins and the lack of a net positive charge immediately following the signal peptide act as topological determinants that promote the insertion of the signal peptide hydrophobic core into the cytoplasmic membrane of Escherichia coli cells with the correct orientation required to initiate the protein export process. The export efficiency of precursor maltose-binding protein (pre-MBP) was found to decrease progressively as the net charge in the early mature region was increased systematically from 0 to +4. This inhibitory effect could be further exacerbated by reducing the net charge in the signal peptide to below 0. One such MBP species, designated MBP-3/+3 and having a net charge of -3 in the signal peptide and +3 in the early mature region, was totally export defective. Revertants in which MBP-3/+3 export was restored were found to harbor mutations in the prlA (secY) gene, encoding a key component of the E. coli protein export machinery. One such mutation, prlA666, was extensively characterized and shown to be a particularly strong suppressor of a variety of MBP export defects. Export of MBP-3/+3 and other MBP species with charge alterations in the early mature region also was substantially improved in E. coli cells harboring certain other prlA mutations originally selected as extragenic suppressors of signal sequence mutations altering the hydrophobic core of the LamB or MBP signal peptide. In addition, the enzymatic activity of alkaline phosphatase (PhoA) fused to a predicted cytoplasmic domain of an integral membrane protein (UhpT) increased significantly in cells harboring prlA666. These results suggest a role for PrlA/SecY in determining the orientation of signal peptides and possibly other membrane-spanning protein domains in the cytoplasmic membrane.
机译:据信,在前体蛋白的极端氨基末端的一个或多个碱性残基和紧随信号肽之后的净正电荷的缺乏是拓扑决定簇,其促进信号肽疏水核插入大肠杆菌的细胞质膜中。具有启动蛋白质输出过程所需的正确方向的大肠杆菌细胞。发现麦芽糖结合蛋白前体(pre-MBP)的出口效率随着早期成熟区域中的净电荷从0逐渐系统增加到+4而逐渐降低。通过将信号肽中的净电荷降低到0以下,可以进一步加剧这种抑制作用。一种这样的MBP物质,称为MBP-3 / + 3,信号肽中的净电荷为-3,早期为+3。成熟的地区,完全是出口缺陷。发现恢复了MBP-3 / + 3输出的回复株在prlA(secY)基因中带有突变,该基因编码大肠杆菌蛋白质输出机制的关键组成部分。一种这样的突变,prlA666,得到了广泛的鉴定,显示出它是多种MBP出口缺陷的特别强大的抑制剂。在具有某些其他prlA突变的大肠杆菌细胞中,MBP-3 / + 3和其他MBP种类的出口在早期成熟区域中的电荷变化也得到了显着改善,该细菌最初被选为改变LamB疏水核心的信号序列突变的外源抑制剂。或MBP信号肽。此外,在携带prlA666的细胞中,碱性磷酸酶(PhoA)与完整膜蛋白(UhpT)的预期胞质域融合的酶活性显着增加。这些结果表明PrlA / SecY在确定信号肽以及胞质膜中其他跨膜蛋白结构域的方向中的作用。

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