Bettendorff L, Peeters M, Wins P, Schoffeniels E
Laboratory of General and Comparative Biochemistry, University of Liège, Belgium.
J Neurochem. 1993 Feb;60(2):423-34. doi: 10.1111/j.1471-4159.1993.tb03168.x.
Our results show that a net synthesis of thiamine triphosphate (TTP) can be demonstrated in vitro using rat brain extracts. The total homogenate was preincubated with thiamine or its diphosphate derivative (TDP), centrifuged, and washed twice. With TDP (1 mM) as substrate, a 10-fold increase in TTP content was observed in this fraction (nuclear fraction, membrane vesicles). A smaller, but significant, increase was observed in the P2 fraction (mitochondrial/synaptosomal fraction). In view of the low TTP content of our fractions, it was carefully assessed that authentic TTP was being formed. Incorporation of radioactivity from [beta-32P]TDP and [gamma-32P]ATP in TTP suggests that these two compounds are its precursors. Furthermore, TTP synthesis was inhibited by ADP and relatively low concentrations of Zn2+. These results suggest that TTP synthesis is catalyzed by an ATP:TDP transphosphorylase rather than by the cytoplasmic adenylate kinase that may be present in the vesicles. After osmotic lysis of the vesicles at alkaline pH, TTP was recovered in protein-bound form. Concomitantly, a soluble thiamine triphosphatase, with alkaline pH optimum, was also released from the vesicles. No net synthesis could be obtained in the cytosolic fraction or in detergent-solubilized systems. Like TTP synthesis, chloride permeability of the vesicles was increased when the homogenate had been incubated with thiamine and particularly with TDP. Our results suggest a regulatory role of TTP on chloride permeability, but the target remains to be characterized.
我们的结果表明,使用大鼠脑提取物可在体外证明硫胺三磷酸(TTP)的净合成。将总匀浆与硫胺或其二磷酸衍生物(TDP)预孵育,离心,并洗涤两次。以TDP(1 mM)作为底物,在该部分(核部分、膜囊泡)中观察到TTP含量增加了10倍。在P2部分(线粒体/突触体部分)中观察到较小但显著的增加。鉴于我们各部分的TTP含量较低,经过仔细评估确定正在形成真正的TTP。[β-32P]TDP和[γ-32P]ATP中的放射性掺入TTP表明这两种化合物是其前体。此外,TTP合成受到ADP和相对低浓度的Zn2+的抑制。这些结果表明,TTP合成是由ATP:TDP转磷酸酶催化的,而不是由可能存在于囊泡中的细胞质腺苷酸激酶催化的。在碱性pH下对囊泡进行渗透裂解后,TTP以蛋白质结合形式回收。同时,一种最适pH为碱性的可溶性硫胺三磷酸酶也从囊泡中释放出来。在胞质部分或去污剂增溶系统中无法获得净合成。与TTP合成一样,当匀浆与硫胺特别是与TDP孵育时,囊泡的氯离子通透性增加。我们的结果表明TTP对氯离子通透性具有调节作用,但靶点仍有待确定。