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D-丙氨酸-D-X连接酶:通过混合、脉冲诱导X射线发射和快速淬灭研究评估磷酸-D-丙氨酰中间体

D-Ala-D-X ligases: evaluation of D-alanyl phosphate intermediate by MIX, PIX and rapid quench studies.

作者信息

Healy V L, Mullins L S, Li X, Hall S E, Raushel F M, Walsh C T

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Chem Biol. 2000 Jul;7(7):505-14. doi: 10.1016/s1074-5521(00)00135-6.

Abstract

BACKGROUND

The D-alanyl-D-lactate (D-Ala-D-Lac) ligase is required for synthesis of altered peptidoglycan (PG) termini in the VanA phenotype of vancomycin-resistant enterococci (VRE), and the D-alanyl-D-serine (D-Ala-D-Ser) ligase is required for the VanC phenotype of VRE. Here we have compared these with the Escherichia coli D-Ala-D-Ala ligase DdlB for formation of the enzyme-bound D-alanyl phosphate, D-Ala(1)-PO(3)(2-) (D-Ala(1)-P), intermediate.

RESULTS

The VanC2 ligase catalyzes a molecular isotope exchange (MIX) partial reaction, incorporating radioactivity from (14)C-D-Ser into D-Ala-(14)C-D-Ser at a rate of 0.7 min(-1), which approaches kinetic competence for the reversible D-Ala(1)-P formation from the back direction. A positional isotope exchange (PIX) study with the VanC2 and VanA ligases displayed a D-Ala(1)-dependent bridge to nonbridge exchange of the oxygen-18 label of [gamma-(18)O(4)]-ATP at rates of up to 0.6 min(-1); this exchange was completely suppressed by the addition of the second substrate D-Ser or D-Lac, respectively, as the D-Ala(1)-P intermediate was swept in the forward direction. As a third criterion for formation of bound D-Ala(1)-P, we conducted rapid quench studies to detect bursts of ADP formation in the first turnover of DdlB and VanA. With E. coli DdlB, there was a burst amplitude of ADP corresponding to 26-30% of the DdlB active sites, followed by the expected steady-state rate of 620-650 min(-1). For D-Ala-D-Lac and D-Ala-D-Ala synthesis by VanA, we measured a burst of 25-30% or 51% of active enzyme, respectively.

CONCLUSIONS

These three approaches support the rapid (more than 1000 min(-1)), reversible formation of the enzyme intermediate D-Ala(1)-P by members of the D-Ala-D-X (where X is Ala, Ser or Lac) ligase superfamily.

摘要

背景

在耐万古霉素肠球菌(VRE)的VanA表型中,合成改变的肽聚糖(PG)末端需要D - 丙氨酰 - D - 乳酸(D - Ala - D - Lac)连接酶,而在VRE的VanC表型中需要D - 丙氨酰 - D - 丝氨酸(D - Ala - D - Ser)连接酶。在此,我们将它们与大肠杆菌D - Ala - D - Ala连接酶DdlB进行了比较,以研究酶结合的磷酸D - 丙氨酰,即D - Ala(1)-PO(3)(2-)(D - Ala(1)-P)中间体的形成。

结果

VanC2连接酶催化分子同位素交换(MIX)部分反应,以0.7 min(-1)的速率将(14)C - D - Ser中的放射性掺入D - Ala - (14)C - D - Ser,这接近从反向可逆形成D - Ala(1)-P的动力学能力。对VanC2和VanA连接酶进行的位置同位素交换(PIX)研究显示,[γ-(18)O(4)] - ATP的氧 - 18标记以高达0.6 min(-1)的速率进行依赖于D - Ala(1)的桥连到非桥连交换;分别加入第二种底物D - Ser或D - Lac后,这种交换被完全抑制,因为D - Ala(1)-P中间体向前反应。作为结合的D - Ala(1)-P形成的第三个标准,我们进行了快速淬灭研究,以检测DdlB和VanA首次周转时ADP形成的突发情况。对于大肠杆菌DdlB,ADP的突发幅度相当于DdlB活性位点的26 - 30%,随后是预期的620 - 650 min(-1)的稳态速率。对于VanA合成D - Ala - D - Lac和D - Ala - D - Ala,我们分别测量到活性酶的突发比例为25 - 30%或51%。

结论

这三种方法支持D - Ala - D - X(其中X为Ala、Ser或Lac)连接酶超家族成员快速(超过1000 min(-1))、可逆地形成酶中间体D - Ala(1)-P。

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