Smith G K, Banks S D, Bigham E C, Nichol C A
Arch Biochem Biophys. 1987 May 1;254(2):416-20. doi: 10.1016/0003-9861(87)90119-6.
The substrate specificity of dihydrofolate reductase from cells of different origin has been thought to be quite narrow, and unconjugated dihydropterins such as 6-methyl-dihydropterin are known to be very poor substrates. We have reinvestigated the substrate specificity of several dihydropterins and, in addition, have observed that in a new series of unconjugated dihydropterins of the general structure 6-CH2O(CH2)nCH3 several compounds are excellent substrates for the bovine liver enzyme, but none of them bind as well as dihydrofolate. The substrate activity (apparent Vmax) of these compounds increases from 17 to 110% that of the natural substrate, dihydrofolate, as n is increased from 0 to 3. In contrast, these unconjugated dihydropterins are very poor substrates for the Escherichia coli enzyme.
来自不同来源细胞的二氢叶酸还原酶的底物特异性一直被认为相当狭窄,并且已知未结合的二氢蝶呤,如6-甲基二氢蝶呤,是非常差的底物。我们重新研究了几种二氢蝶呤的底物特异性,此外,还观察到在一系列具有通式6-CH2O(CH2)nCH3的新的未结合二氢蝶呤中,有几种化合物是牛肝酶的优良底物,但它们与二氢叶酸的结合能力都不如二氢叶酸。随着n从0增加到3,这些化合物的底物活性(表观Vmax)从天然底物二氢叶酸的17%增加到110%。相比之下,这些未结合的二氢蝶呤是大肠杆菌酶的非常差的底物。