Pourcher T, Sarkar H K, Bassilana M, Kaback H R, Leblanc G
Laboratoire J. Maetz, Département de Biologie du Commissariat à l'Energie Atomique, Villefranche sur mer, France.
Proc Natl Acad Sci U S A. 1990 Jan;87(1):468-72. doi: 10.1073/pnas.87.1.468.
Oligonucleotide-directed, site-specific mutagenesis has been utilized to modify the melB gene of Escherichia coli such that each of the seven His residues in the melibiose permease has been replaced with Arg. Replacement of His-213, His-442, or His-456 has no significant effect on permease activity, while permease with Arg in place of His-198, His-318, or His-357 retains more than 70% of wild-type activity. In striking contrast, replacement of His-94 with Arg causes a complete loss of sugar binding and transport, although the cells contain a normal complement of permease molecules. Thus, as shown previously with lac permease, only a single His residue is important for activity, but, in the case of mel permease, the critical His residue is present in the 3rd putative transmembrane helix rather than the 10th.
寡核苷酸定向的位点特异性诱变已被用于修饰大肠杆菌的melB基因,使得蜜二糖通透酶中的七个组氨酸残基中的每一个都被精氨酸取代。将组氨酸-213、组氨酸-442或组氨酸-456替换对通透酶活性没有显著影响,而用精氨酸取代组氨酸-198、组氨酸-318或组氨酸-357的通透酶保留了超过70%的野生型活性。形成鲜明对比的是,用精氨酸取代组氨酸-94会导致糖结合和转运完全丧失,尽管细胞中含有正常数量的通透酶分子。因此,如先前对乳糖通透酶的研究所示,只有一个组氨酸残基对活性很重要,但就蜜二糖通透酶而言,关键的组氨酸残基存在于第三个假定的跨膜螺旋中,而不是第十个。