Iida A, Groarke J M, Park S, Thom J, Zabicky J H, Hazelbauer G L, Randall L L
EMBO J. 1985 Jul;4(7):1875-80. doi: 10.1002/j.1460-2075.1985.tb03863.x.
Ribose-binding protein is exported to the periplasmic compartment of Escherichia coli by a process that involves proteolytic cleavage of an amino-terminal extension of amino acids from the precursor form of the protein. In a collection of mutants isolated as defective in the Rbs transport system, a strain was identified that contained only precursor ribose-binding protein, none of which was exported to its normal location in the periplasm. The mutated rbsB contained a base substitution that results in a change of leucine to a proline at position-17 in the signal sequence. A pseudorevertant of the mutant contained proteolytically processed, active ribose-binding protein in the periplasm. The pseudorevertant rbsB carried a second mutation: serine at position-15 in the signal sequence was changed to phenylalanine. Isolation of a signal sequence mutant and a corresponding pseudorevertant without specific selection or site-directed mutagenesis emphasizes the possibility of obtaining export mutants without the use of procedures that could bias or limit the range of mutations found. Explanation of the extreme phenotype of the mutant and the effective correction of that phenotype in the pseudorevertant requires extension of current notions of critical features of signal sequences.
核糖结合蛋白通过一个涉及从该蛋白前体形式的氨基末端延伸氨基酸进行蛋白水解切割的过程被输出到大肠杆菌的周质区室。在作为Rbs转运系统缺陷而分离出的一组突变体中,鉴定出一个菌株,该菌株仅含有前体核糖结合蛋白,其中没有一个被输出到其在周质中的正常位置。突变的rbsB含有一个碱基替换,导致信号序列中第17位的亮氨酸变为脯氨酸。该突变体的一个假回复体在周质中含有经蛋白水解加工的活性核糖结合蛋白。假回复体rbsB携带第二个突变:信号序列中第15位的丝氨酸变为苯丙氨酸。在没有特定选择或定点诱变的情况下分离信号序列突变体和相应的假回复体,强调了在不使用可能使发现的突变范围产生偏差或受到限制的程序的情况下获得输出突变体的可能性。对突变体的极端表型及其在假回复体中该表型的有效校正的解释需要扩展当前关于信号序列关键特征的概念。