Smith M A, Grimm B, Kannangara C G, von Wettstein D
Department of Physiology, Carlsberg Laboratory, Copenhagen, Denmark.
Proc Natl Acad Sci U S A. 1991 Nov 1;88(21):9775-9. doi: 10.1073/pnas.88.21.9775.
Purified Synechococcus glutamate-1-semialdehyde aminotransferase (GSA-AT; EC 5.4.3.8) has absorption maxima characteristic of vitamin B6-containing enzymes and can be converted to the pyridoxamine 5'-phosphate or pyridoxal 5'-phosphate form by reaction with diaminovalerate or dioxovalerate, respectively, suggesting that these two analogues are intermediates in the conversion of glutamate 1-semialdehyde (GSA) to 5-aminolevulinate (ALA). Values for Km and kmax were calculated for GSA, diaminovalerate, ALA, and gabaculine from absorption change rates during conversion of one coenzyme form of GSA-AT to the other, upon addition of one of these compounds. The substrate specificity (kmax/Km) of diaminovalerate is about 3 orders of magnitude larger than that of dioxovalerate, making the latter an unlikely intermediate in the enzymic conversion of GSA to ALA. GSA reacts with both coenzyme forms, whereas ALA only reacts with the pyridoxamine 5'-phosphate form of the enzyme. However, ALA does form a complex with the pyridoxal 5'-phosphate form of GSA-AT and inhibits reactions between gabaculine and GSA-AT. This relatively stable complex (Ki = 8 M) may have significance in enzyme inhibition. Both L and D enantiomers of GSA react with GSA-AT. Spectral changes observed upon addition of DL-GSA are apparently due to reaction with the less reactive D-isomer. L-GSA is converted to ALA prior to major spectral changes induced by the racemic mixture.
纯化的聚球藻谷氨酸-1-半醛转氨酶(GSA-AT;EC 5.4.3.8)具有含维生素B6的酶的特征性吸收最大值,并且分别通过与二氨基戊酸或二氧戊酸反应可转化为磷酸吡哆胺5'-磷酸或磷酸吡哆醛5'-磷酸形式,这表明这两种类似物是谷氨酸1-半醛(GSA)转化为5-氨基乙酰丙酸(ALA)过程中的中间体。在将GSA-AT的一种辅酶形式转化为另一种辅酶形式的过程中,加入这些化合物之一后,根据吸收变化率计算了GSA、二氨基戊酸、ALA和加巴喷丁的Km和kmax值。二氨基戊酸的底物特异性(kmax/Km)比二氧戊酸大3个数量级,这使得后者不太可能是GSA酶促转化为ALA的中间体。GSA与两种辅酶形式都反应,而ALA仅与该酶的磷酸吡哆胺5'-磷酸形式反应。然而,ALA确实与GSA-AT的磷酸吡哆醛5'-磷酸形式形成复合物,并抑制加巴喷丁与GSA-AT之间的反应。这种相对稳定的复合物(Ki = 8 M)可能在酶抑制中具有重要意义。GSA的L型和D型对映体均与GSA-AT反应。加入DL-GSA后观察到的光谱变化显然是由于与活性较低的D-异构体反应所致。在由外消旋混合物引起的主要光谱变化之前,L-GSA先转化为ALA。