Ploux O, Soularue P, Marquet A, Gloeckler R, Lemoine Y
Laboratoire de Chimie Organique Biologique URA CNRS 493, Université Pierre et Marie Curie Tour, Paris, France.
Biochem J. 1992 Nov 1;287 ( Pt 3)(Pt 3):685-90. doi: 10.1042/bj2870685.
The pimeloyl-CoA synthase from Bacillus sphaericus has been purified to homogeneity from an overproducing strain of Escherichia coli. The purification yielded milligram quantities of the synthase with a specific activity of 1 unit/mg of protein. Analysis of the products showed that this enzyme catalysed the transformation of pimelate into pimeloyl-CoA with concomitant hydrolysis of ATP to AMP. Using a continuous spectrophotometric assay, we have examined the catalytic properties of the pure enzyme. The pH profile under Vmax. conditions showed a maximum around 8.5. Apparent Km values for pimelate, CoASH, ATP.Mg2- and Mg2+ were respectively 145 microM, 33 microM, 170 microM and 2.3 mM. The enzyme was inhibited by Mg2+ above 10 mM. This acid-CoA ligase exhibited a very sharp substrate specificity, e.g. neither GTP nor pimelate analogues (di- or mono-carboxylic acids) were processed. The bivalent metal ion requirement was also investigated: Mn2+ (73%) and Co2+ (32%) but not Ca2+ could replace Mg2+. The enzyme was inhibited by metal chelators such as 1,10-phenanthroline and EDTA. The synthase was a homodimer with a 28,000-M(r) subunit. N-Terminal sequencing definitely proved that this enzyme was encoded by the bioW gene. A careful study of pimelate uptake by B. sphaericus, E. coli and Pseudomonas dentrificans showed that this metabolite crossed the membrane of these microorganisms by passive diffusion, ruling out the involvement of the bioX gene product as pimelate carrier.
来自球形芽孢杆菌的庚二酰辅酶A合酶已从大肠杆菌的高产菌株中纯化至同质。纯化后得到了毫克量的合酶,其比活性为1单位/毫克蛋白质。对产物的分析表明,该酶催化庚二酸转化为庚二酰辅酶A,同时ATP水解为AMP。使用连续分光光度法测定,我们研究了纯酶的催化特性。在Vmax条件下的pH曲线显示,在8.5左右有一个最大值。庚二酸、辅酶A、ATP·Mg2-和Mg2+的表观Km值分别为145微摩尔、33微摩尔、170微摩尔和2.3毫摩尔。当Mg2+浓度高于10毫摩尔时,该酶受到抑制。这种酰基辅酶A连接酶表现出非常严格 的底物特异性,例如,它既不处理GTP也不处理庚二酸类似物(二元或一元羧酸)。还研究了二价金属离子的需求:Mn2+(73%)和Co2+(32%)可以替代Mg2+,但Ca2+不能。该酶受到金属螯合剂如1,10-菲咯啉和EDTA的抑制。该合酶是一个由28,000-M(r)亚基组成的同型二聚体。N端测序明确证明该酶由bioW基因编码。对球形芽孢杆菌、大肠杆菌和反硝化假单胞菌摄取庚二酸的仔细研究表明,这种代谢物通过被动扩散穿过这些微生物的膜,排除了bioX基因产物作为庚二酸载体的参与。