Bettendorff L, Grandfils C, Wins P, Schoffeniels E
Laboratory of General and Comparative Biochemistry, University of Liège, Belgium.
J Neurochem. 1989 Sep;53(3):738-46. doi: 10.1111/j.1471-4159.1989.tb11767.x.
The main electric organ of Electrophorus electricus is particularly rich in thiamine triphosphate (TTP). Membrane fractions prepared from this tissue contain a thiamine triphosphatase that is strongly activated by anions and irreversibly inhibited by 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid (DIDS), an anion transport inhibitor. Kinetic parameters of the enzyme are markedly affected by the conditions of enzyme preparation: In crude membranes, the apparent Km is 1.8 mM and the pH optimum is 6.8, but trypsin treatment of these membranes or their purification on a sucrose gradient decreases both the apparent Km (to 0.2 mM) and the pH optimum (to 5.0). Anions such as NO3- (250 mM) have the opposite effect, i.e., even in purified membranes, the pH optimum is now 7.8 and the Km is 1.1 mM; at pH 7.8, NO3- increases the Vmax 24-fold. TTP protects against inhibition by DIDS, and the KD for TTP could be estimated to be 0.25 mM, a value close to the apparent Km measured in the same purified membrane preparation. Thiamine pyrophosphate (0.1 mM) did not protect against DIDS inhibition. At lower (10(-5)-10(-6) M) substrate concentrations, Lineweaver-Burk plots of thiamine triphosphatase activity markedly deviate from linearity, with the curve being concave downward. This suggests either anticooperative binding or the existence of binding sites with different affinities for TTP. The latter possibility is supported by binding data obtained using [gamma-32P]TTP. Our data suggest the existence of a high-affinity binding site (KD of approximately 0.5 microM) for the Mg-TTP complex.(ABSTRACT TRUNCATED AT 250 WORDS)
电鳗的主要发电器官中硫胺三磷酸(TTP)含量特别丰富。从该组织制备的膜组分含有一种硫胺三磷酸酶,它受到阴离子的强烈激活,并被阴离子转运抑制剂4,4'-二异硫氰基芪-2,2'-二磺酸(DIDS)不可逆地抑制。酶的动力学参数明显受酶制备条件的影响:在粗制膜中,表观Km为1.8 mM,最适pH为6.8,但用胰蛋白酶处理这些膜或在蔗糖梯度上对其进行纯化会使表观Km(降至0.2 mM)和最适pH(降至5.0)均降低。诸如NO3-(250 mM)等阴离子则有相反的作用,即即使在纯化膜中,最适pH现在为7.8,Km为1.1 mM;在pH 7.8时,NO3-使Vmax增加24倍。TTP可防止DIDS的抑制作用,TTP的KD估计为0.25 mM,该值接近在相同纯化膜制备物中测得的表观Km。硫胺焦磷酸(0.1 mM)不能防止DIDS的抑制作用。在较低(10^-5 - 10^-6 M)底物浓度下,硫胺三磷酸酶活性的Lineweaver-Burk图明显偏离线性,曲线向下凹。这表明要么是反协同结合,要么是存在对TTP具有不同亲和力的结合位点。后一种可能性得到了使用[γ-32P]TTP获得的结合数据的支持。我们的数据表明存在一个对Mg-TTP复合物具有高亲和力的结合位点(KD约为0.5 μM)。(摘要截断于250字)