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效应物与磷酸果糖激酶结合的动力学。由1,N6-亚乙烯基三磷酸腺苷诱导的别构构象转变。

The kinetics of effector binding to phosphofructokinase. The allosteric conformational transition induced by 1,N6-ethenoadenosine triphosphate.

作者信息

Roberts D, Kellett G L

出版信息

Biochem J. 1979 Nov 1;183(2):349-60. doi: 10.1042/bj1830349.

Abstract
  1. The fluorescent ATP analogue 1,N6-etheno-ATP is a good substrate and an efficient allosteric inhibitor of rabbit skeletal-muscle phosphofructokinase. 2. Fluorescence energy transfer occurs between bound 1,N6-etheno-ATP and phosphofructokinase. 1,N6-Etheno-ATP fluorescence is enhanced, intrinsic protein fluorescence is quenched, and the excitation spectrum of 1,N6-etheno-ATP fluorescence is characteristic of protein absorption. 3. The binding reaction of 1,N6-etheno-ATP observed by stopped-flow fluorimetry is biphasic. The fast phase results from binding to the catalytic site alone. The slow phase results from the allosteric transition of the R conformation into the T conformation induced by the binding of 1,N6-etheno-ATP to the regulatory site. 4. The fluorescence signal that allows the transition of the R conformation into the T conformation to be observed does not arise from 1,N6-etheno-ATP bound to the regulatory site. It arises instead from 1,N6-etheno-ATP bound to the catalytic site as a consequence of changes at the catalytic site caused by the transition of the R conformation into the T conformation. 5. In the presence of excess of Mg2+, the affinity of 1,N6-etheno-ATP for the regulatory site is very much greater in the T state than in the R state.
摘要
  1. 荧光ATP类似物1,N6-乙烯基-ATP是兔骨骼肌磷酸果糖激酶的良好底物和有效的变构抑制剂。2. 结合的1,N6-乙烯基-ATP与磷酸果糖激酶之间发生荧光能量转移。1,N6-乙烯基-ATP荧光增强,蛋白质固有荧光猝灭,且1,N6-乙烯基-ATP荧光的激发光谱具有蛋白质吸收的特征。3. 通过停流荧光法观察到的1,N6-乙烯基-ATP的结合反应是双相的。快速相仅源于与催化位点的结合。慢速相源于1,N6-乙烯基-ATP与调节位点结合诱导的R构象向T构象的变构转变。4. 能够观察到R构象向T构象转变的荧光信号并非来自与调节位点结合的1,N6-乙烯基-ATP。相反,它源于由于R构象向T构象转变导致催化位点发生变化而与催化位点结合的1,N6-乙烯基-ATP。5. 在存在过量Mg2+的情况下,1,N6-乙烯基-ATP对调节位点的亲和力在T状态下比在R状态下大得多。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fde/1161565/ab1c2a2df1ab/biochemj00452-0161-a.jpg

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