Zhou M, Reznikoff W S
Department of Biochemistry, University of Wisconsin-Madison, 420 Henry Mall, Madison, WI 53706, USA.
J Mol Biol. 1997 Aug 22;271(3):362-73. doi: 10.1006/jmbi.1997.1188.
Tn5 transposase (Tnp) binds to Tn5 and IS50 end inverted repeats, the outside end (OE) and the inside end (IE), to initiate transposition. We report the isolation of four Tnp mutants (YH41, TP47, EK54 and EV54) that increase the OE-mediated transposition frequency and enhance the binding affinity of Tnp for OE DNA. In addition, two of the Tnp mutants (TP47 and EK54) appear to be change-of-specificity mutants, since they alter the recognition of OE versus IE relative to the wild-type Tnp. EK54 enhances OE recognition but decreases IE recognition. TP47 enhances both OE and IE recognition but with a much greater enhancement for IE than for OE. This change-of-specificity effect of TP47 is observed only when TP47 Tnp is synthesized in cis to the DNA that contains the ends. We propose that Lys54 makes a favorable interaction with an OE-specific nucleotide pair(s), while Pro47 may cause a more favorable interaction with an IE-specific nucleotide pair(s) than it does with the corresponding OE-specific nucleotide pair(s). A model to explain the preference of TP47 Tnp for the IE in cis but not in trans is proposed.
Tn5转座酶(Tnp)与Tn5和IS50末端反向重复序列(外侧末端(OE)和内侧末端(IE))结合,以启动转座。我们报道了四个Tnp突变体(YH41、TP47、EK54和EV54)的分离,这些突变体增加了OE介导的转座频率,并增强了Tnp对OE DNA的结合亲和力。此外,两个Tnp突变体(TP47和EK54)似乎是特异性改变突变体,因为相对于野生型Tnp,它们改变了对OE与IE的识别。EK54增强了对OE的识别,但降低了对IE的识别。TP47增强了对OE和IE的识别,但对IE的增强比对OE的增强大得多。只有当TP47 Tnp与包含末端的DNA顺式合成时,才观察到TP47的这种特异性改变效应。我们提出,赖氨酸54与OE特异性核苷酸对产生有利的相互作用,而脯氨酸47可能与IE特异性核苷酸对产生比与相应的OE特异性核苷酸对更有利的相互作用。提出了一个模型来解释TP47 Tnp在顺式而非反式中对IE的偏好。