Alexeyev Mikhail F, Winkler Herbert H
Laboratory of Molecular Biology, Department of Microbiology and Immunology, University of South Alabama College of Medicine, LMB Building, Mobile, AL 36688-0001, USA.
Biochim Biophys Acta. 2002 Sep 20;1565(1):136. doi: 10.1016/s0005-2736(02)00544-8.
The ATP/ADP translocase (Tlc) of Rickettsia prowazekii is a basic protein with isoelectric point (pI)=9.84. It is conceivable, therefore, that basic residues in this protein are involved in electrostatic interactions with negatively charged substrates. We tested this hypothesis by individually mutating all basic residues in Tlc to Cys. Unexpectedly, mutations of only 20 out of 51 basic residues resulted in greater than 80% inhibition of transport activity. Moreover, 12 of 51Cys-substitution mutants exhibited higher than wild-type (WT) activity. At least in one case this up-effect was additive and the double mutant Lys422Cys Lys427Cys transported ATP five-fold better than WT protein. Since in these two single mutants and in the corresponding double mutant K(m)'s were similar to that of WT protein, we conclude that Tlc may have evolved a mechanism that limits the transporter's exchange rate and that at least these two basic residues play a key role in that mechanism. Based on the alignment of 16 Tlc homologs, the loss of activity in the mutants poorly correlates with charge conservation within the Tlc family. Also, despite the presence of three positively charged and one negatively charged intramembrane residues, we have failed to identify potential charge pairs (salt bridges) by either charge reversal or charge neutralization approaches.
普氏立克次氏体的ATP/ADP转位酶(Tlc)是一种等电点(pI)=9.84的碱性蛋白。因此,可以推测该蛋白中的碱性残基参与了与带负电底物的静电相互作用。我们通过将Tlc中的所有碱性残基逐个突变为半胱氨酸来验证这一假设。出乎意料的是,51个碱性残基中只有20个发生突变导致转运活性受到超过80%的抑制。此外,51个半胱氨酸替代突变体中有12个表现出高于野生型(WT)的活性。至少在一种情况下,这种增强效应是累加的,双突变体Lys422Cys Lys427Cys转运ATP的能力比WT蛋白高五倍。由于在这两个单突变体和相应的双突变体中,K(m)与WT蛋白相似,我们得出结论,Tlc可能进化出了一种限制转运体交换速率的机制,并且至少这两个碱性残基在该机制中起关键作用。基于16个Tlc同源物的比对,突变体中活性的丧失与Tlc家族内的电荷保守性相关性较差。此外,尽管存在三个带正电和一个带负电的跨膜残基,但我们通过电荷反转或电荷中和方法均未能鉴定出潜在的电荷对(盐桥)。