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NAD binding by human CD38 analyzed by Trp189 fluorescence

机译:NAD通过TRP189荧光分析的人CD38结合

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摘要

The NAD-glycohydrolase/ADP-ribosyl cyclase CD38 catalyzes the metabolism of nicotinamide adenine dinucleotide (NAD) to the Ca2+ mobilizing second messengers ADP-ribose (ADPR), 2'-deoxy-ADPR, and cyclic ADP ribose (cADPR). In the present study, we investigated binding and metabolism of NAD by a soluble fragment of human CD38, sCD38, and its catalytically inactive mutant by monitoring changes in endogenous tryptophan (Trp) fluorescence. Addition of NAD resulted in a concentration-dependent decrease in sCD38 fluorescence that is mainly caused by the Trp residue W189. Amplitude of the fluorescence decrease was fitted as one-site binding curve revealing a dissociation constant for NAD of 29 mu M. A comparable dissociation constant was found with the catalytically inactive sCD38 mutant (K-D 37 mu M NAD) indicating that binding of NAD is not significantly affected by the mutation. The NAD-induced decrease in Trp fluorescence completely recovered in case of sCD38. Kinetics of recovery was slowed down with decreasing temperature and sCD38 concentration and increasing NAD concentration demonstrating that recovery in fluorescence is proportional to the enzymatic activity of sCD38. Accordingly, recovery in fluorescence was not observed with the catalytically inactive mutant.
机译:NAD-甘油氢化酶/ ADP-核糖基环酶CD38催化烟酰胺腺嘌呤二核苷酸(NAD)的代谢到CA2 +动员第二信使ADP-核糖(ADPR),2'-脱氧-ADPR和环状ADP核糖(CADPR)。在本研究中,通过监测内源性色氨酸(TRP)荧光的变化,我们通过人CD38,SCD38和其催化活性突变体的可溶性片段研究了NAD的结合和代谢。添加NAD导致SCD38荧光的浓度依赖性降低,其主要由TRP残基W189引起。荧光减少的幅度被装配为单位结合曲线,显示29μm的NAD的解离常数。在催化活性的SCD38突变体(KD37μmNAD)中发现了可比的解离常数,表明NAD的结合不是受到突变的显着影响。在SCD38的情况下,NAD诱导的TRP荧光的降低完全恢复。随着温度降低和SCD38浓度降低,恢复动力学和SCD38浓度增加,并且NAD浓度的增加表明荧光恢复与SCD38的酶活性成比例。因此,没有用催化活性突变体观察到荧光的恢复。

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