Cicin-Sain Lipa, Froebe Ana, Bordukalo-Niksic Tatjana, Jernej Branimir
Laboratory for Neurochemistry and Molecular Neurobiology, Rudjer Boskovic Institute, Bijenicka 54, HR-10000 Zagreb, Croatia.
Life Sci. 2005 Jun 10;77(4):452-61. doi: 10.1016/j.lfs.2005.01.007. Epub 2005 Feb 19.
By selective breeding of Wistar rats for the extreme values of platelet serotonin (5HT) level (PSL), we have developed earlier two sublines of animals differing markedly in this parameter. Further studies, performed on the protein and mRNA levels, revealed platelet serotonin transporter (5HTt) as parameter underlying mentioned differences in PSL between sublines. In this work, we have performed full-kinetic analysis of platelet serotonin uptake (PSU) in animals from the genetically selected sublines. The results demonstrated marked differences in maximal velocity (V(max)) of the 5HT transporter, as contrasted to the lack of any difference in the Michaelis constant (K(m)). High correlation between PSL and V(max) of PSU was demonstrated, revealing that the number of membrane 5HT transporter sites is under genetic control and responsible for marked differences in PSL between high- and low-5HT sublines. These results enabled further selective breeding of animals for the extremes of V(max) of platelet 5HT transporter, and so the development of more specific model "Wistar-Zagreb 5HT rats".
通过对Wistar大鼠的血小板5-羟色胺(5HT)水平(PSL)的极值进行选择性育种,我们此前已培育出两个在该参数上有显著差异的动物亚系。在蛋白质和mRNA水平上进行的进一步研究表明,血小板5-羟色胺转运体(5HTt)是上述亚系间PSL差异的潜在参数。在这项工作中,我们对来自基因选择亚系的动物的血小板5-羟色胺摄取(PSU)进行了完整的动力学分析。结果显示,5HT转运体的最大速度(V(max))存在显著差异,而米氏常数(K(m))则没有任何差异。PSL与PSU的V(max)之间存在高度相关性,表明膜5HT转运体位点的数量受遗传控制,并导致高5HT和低5HT亚系之间PSL的显著差异。这些结果使得能够进一步对动物进行血小板5HT转运体V(max)极值的选择性育种,从而培育出更具特异性的模型“Wistar-Zagreb 5HT大鼠”。