Bienvenue David L, Gilner Danuta M, Davis Ryan S, Bennett Brian, Holz Richard C
Department of Chemistry and Biochemistry, Utah State University, Logan, Utah 84322-0300, USA.
Biochemistry. 2003 Sep 16;42(36):10756-63. doi: 10.1021/bi034845+.
The catalytic and structural properties of divalent metal ion cofactor binding sites in the dapE-encoded N-succinyl-L,L-diaminopimelic acid desuccinylase (DapE) from Haemophilus influenzae were investigated. Co(II)-substituted DapE enzyme was 25% more active than the Zn(II)-loaded form of the enzyme. Interestingly, Mn(II) can activate DapE, but only to approximately 20% of the Zn(II)-loaded enzyme. The order of the observed k(cat) values are Co(II) > Zn(II) > Cd(II) > Mn(II) >Ni(II) approximately equal Cu(II) approximately equal Mg(II). DapE was shown to only hydrolyze L,L-N-succinyl-diaminopimelic acid (L,L-SDAP) and was inactive toward D,L-, L,D-, and D,D-SDAP. DapE was also inactive toward several acetylated amino acids as well as D,L-succinyl aminopimelate, which differs from the natural substrate, L,L-SDAP, by the absence of the amine group on the amino acid side chain. These data imply that the carboxylate of the succinyl moiety and the amine form important interactions with the active site of DapE. The affinity of DapE for one versus two Zn(II) ions differs by nearly 2.2 x 10(3) times (K(d1) = 0.14 microM vs K(d2) = 300 microM). In addition, an Arrhenius plot was constructed from k(cat) values measured between 16 and 35 degrees C and was linear over this temperature range. The activation energy for [ZnZn(DapE)] was found to be 31 kJ/mol with the remaining thermodynamic parameters calculated at 25 degrees C being DeltaG(++) = 64 kJ/mol, DeltaH(++) = 28.5 kJ/mol, and DeltaS(++) = -119 J mol(-1) K(-1). Electronic absorption and EPR spectra of [Co_(DapE)] and [CoCo(DapE)] indicate that the first Co(II) binding site is five-coordinate, while the second site is octahedral. In addition, any spin-spin interaction between the two Co(II) ions in [CoCo(DapE)] is very weak. The kinetic and spectroscopic data presented herein suggest that the DapE from H. influenzae has similar divalent metal binding properties to the aminopeptidase from Aeromonas proteolytica (AAP), and the observed divalent metal ion binding properties are discussed with respect to their catalytic roles in SDAP hydrolysis.
对来自流感嗜血杆菌的dapE编码的N-琥珀酰-L,L-二氨基庚二酸脱琥珀酰酶(DapE)中二价金属离子辅因子结合位点的催化和结构特性进行了研究。钴(II)取代的DapE酶比锌(II)负载形式的酶活性高25%。有趣的是,锰(II)可以激活DapE,但活性仅约为锌(II)负载酶的20%。观察到的催化常数(k(cat))值顺序为:钴(II)>锌(II)>镉(II)>锰(II)>镍(II)≈铜(II)≈镁(II)。结果表明,DapE仅水解L,L-N-琥珀酰二氨基庚二酸(L,L-SDAP),对D,L-、L,D-和D,D-SDAP无活性。DapE对几种乙酰化氨基酸以及D,L-琥珀酰氨基庚二酸也无活性,后者与天然底物L,L-SDAP的区别在于氨基酸侧链上没有氨基。这些数据表明,琥珀酰部分的羧酸盐和胺与DapE的活性位点形成重要相互作用。DapE对一个与两个锌(II)离子的亲和力相差近2.2×10³倍(解离常数K(d1)=0.14微摩尔,K(d2)=300微摩尔)。此外,根据在16至35摄氏度之间测得的催化常数(k(cat))值构建了阿伦尼乌斯图,该图在该温度范围内呈线性。发现[ZnZn(DapE)]的活化能为31千焦/摩尔,在25摄氏度下计算的其余热力学参数为:活化自由能(ΔG(++))=64千焦/摩尔,活化焓(ΔH(++))=28.5千焦/摩尔,活化熵(ΔS(++))=-119焦/(摩尔·开尔文)。[Co_(DapE)]和[CoCo(DapE)]的电子吸收光谱和电子顺磁共振光谱表明,第一个钴(II)结合位点是五配位的,而第二个位点是八面体的。此外,[CoCo(DapE)]中两个钴(II)离子之间的任何自旋-自旋相互作用都非常弱。本文给出的动力学和光谱数据表明,流感嗜血杆菌的DapE与解蛋白气单胞菌的氨肽酶(AAP)具有相似的二价金属结合特性,并结合它们在SDAP水解中的催化作用对观察到的二价金属离子结合特性进行了讨论。