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Transient Kinetic Analysis of L-Serine Interaction with Escherichia coli D-3-Phosphoglycerate Dehydrogenase Containing Amino Acid Mutations in the Hinge Regions

机译:L-丝氨酸与大肠杆菌D-3-磷酸甘油酸脱氢酶相互作用的瞬态动力学分析,该酶在铰链区含有氨基酸突变。

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In Escherichia coil D-3-phosphoglycerate dehydrogenase, the amino acid sequences G294-G295 and G336-G337. are found between structural domains and appear to function as hinge regions. Mutagenesis studies of these sequences showed that bulky side chains had significant effects on the kinetic properties of the enzyme. Placement of a tryptophanyl residue near the serine binding site (W139F/E360W) allows serine binding to be monitored by fluorescence quenching analysis. Pre-steady-state analysis has demonstrated that serine binds to two forms of the free enzyme, E and E+. " Conversion of Gly-336 to valine has its main effect on the K-d of serine binding to one form of the free enzyme (E) while maintaining the cooperativity of t binding observed in the native enzyme. Conversion of Gly-294 to valine eliminates a rate limiting conformational change that follows serine binding to E. The conformational change between the two forms of free enzyme is maintained, but the Hill coefficient for cooperativity is significantly lowered. The data indicate that the cooperative transmission induced by serine binding is transmitted through the Gly294-Gly295 hinge region to the opposite serine binding interface and that this is most likely propagated by way of the " substrate binding domain-regulatory domain interface. In the G294 mutant enzyme, both serine bound species, E.Ser and E*.Ser are present in significant amounts indicating that cooperativity of serine binding does not result from the binding to two different forms. The data also suggest that the E* form may be inactive even when serine is not bound.
机译:在大肠杆菌中,D-3-磷酸甘油酸脱氢酶的氨基酸序列为G294-G295和G336-G337。在结构域之间被发现并且似乎起铰链区的作用。这些序列的诱变研究表明,庞大的侧链对酶的动力学特性具有重大影响。色氨酸残基靠近丝氨酸结合位点(W139F / E360W)的放置使丝氨酸结合可以通过荧光猝灭分析来监测。稳态前分析表明,丝氨酸与两种形式的游离酶E和E +结合。 “ Gly-336转化为缬氨酸对丝氨酸结合一种形式的游离酶(E)的Kd具有主要作用,同时保持了天然酶中t结合的协同作用。Gly-294转化为缬氨酸消除了丝氨酸与E结合后的速率限制构象变化。两种形式的游离酶之间的构象变化得以维持,但协同作用的Hill系数显着降低。数据表明丝氨酸结合诱导的协同传递通过Gly294传递-Gly295铰链区连接到相反的丝氨酸结合界面,并且这很可能通过“底物结合域-调节域界面”传播。在G294突变酶中,丝氨酸结合的物种E.Ser和E * .Ser都大量存在,这表明丝氨酸结合的协同作用不是由与两种不同形式的结合引起的。数据还表明,即使未结合丝氨酸,E *形式也可能不活跃。

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