Van Kraaij C, Breukink E, Rollema H S, Siezen R J, Demel R A, De Kruijff B, Kuipers O P
Department of Biophysical Chemistry, Netherlands Institute for Dairy Research (NIZO), Ede.
Eur J Biochem. 1997 Jul 1;247(1):114-20. doi: 10.1111/j.1432-1033.1997.00114.x.
Three mutants of the antibiotic nisin Z, in which the Val32 residue was replaced by a Glu, Lys or Trp residue, were produced and characterized for the purpose of establishing the role of charge differences in the C-terminal part of nisin on antimicrobial activity and signaling properties. 1H-NMR analyses showed that all three mutants harbor an unmodified serine residue at position 33, instead of the usual dehydroalanine. Apparently, the nature of the residue preceding the serine to be dehydrated, strongly affects the efficiency of modification. Cleavage of [Glu32,Ser33]nisin Z by endoproteinase Glu-C yielded [Glu32]nisin Z(1-32)-peptide, which has a net charge difference of -2 relative to wild-type nisin Z. The activity of [Lys32,Ser33]nisin Z against Micrococcus flavus was similar to that of wild-type nisin, while [Trp32,Ser33]nisin Z, [Glu32,Ser33]nisin Z and [Glu32]nisin Z(1-32)-peptide exhibited 3-5-fold reduced activity, indicating that negative charges in the C-terminal part of nisin Z are detrimental for activity. All variants showed significant loss of activity against Streptococcus thermophilus. The potency of the nisin variants to act as signaling molecules for auto-induction of biosynthesis was significantly reduced. To obtain mutant production, extracellular addition of (mutant) nisin Z to the lactococcal expression strains was essential.
为确定乳链菌肽Z C端电荷差异对抗菌活性和信号传导特性的作用,制备并表征了乳链菌肽Z的三个突变体,其中第32位缬氨酸残基被谷氨酸、赖氨酸或色氨酸残基取代。1H-NMR分析表明,所有三个突变体在第33位均含有未修饰的丝氨酸残基,而非通常的脱氢丙氨酸。显然,待脱水丝氨酸之前残基的性质强烈影响修饰效率。用内肽酶Glu-C切割[Glu32,Ser33]乳链菌肽Z产生[Glu32]乳链菌肽Z(1-32)-肽,其相对于野生型乳链菌肽Z净电荷差为-2。[Lys32,Ser33]乳链菌肽Z对黄微球菌的活性与野生型乳链菌肽相似,而[Trp32,Ser33]乳链菌肽Z、[Glu32,Ser33]乳链菌肽Z和[Glu32]乳链菌肽Z(1-32)-肽活性降低3-5倍,表明乳链菌肽Z C端的负电荷对活性不利。所有变体对嗜热链球菌的活性均显著丧失。乳链菌肽变体作为生物合成自诱导信号分子的能力显著降低。为获得突变体产物,向乳球菌表达菌株细胞外添加(突变体)乳链菌肽Z至关重要。