Caputi M, Baralle F E, Melo C A
International Centre for Genetic Engineering and Biotechnology-UNIDO, Trieste, Italy.
Biochim Biophys Acta. 1995 Jul 25;1263(1):53-9. doi: 10.1016/0167-4781(95)00067-q.
The modulation of fibronectin (FN) functions in cell-cell and cell-substrate interactions in a variety of physiological situations is achieved by the selective expression of different isoforms, which in the rat are generated by alternatively splicing of at least three regions of the molecule: EIIIA, EIIIB and V. Extensive information has been collected on the regulation of the differential processing of the single alternatively spliced regions but up to now there was scant knowledge about a possible coordinated expression of the three regions in the same transcript. Using a long range RT-PCR system we have shown that most of the splicing regulation is autonomous for each individual region but we have also observed a preferential expression of the EIIIA+ form linked to the EIIIB- variant that is age independent. Furthermore the analysis of the single regions showed interesting variations occurring in brain during the ageing. There is a decrease in the V120 form between the 6- and the 24-month-old rat brain (from 57% to 39%), whereas despite a constant prevalence of the EIIIA- form in the young rats (65%) there is a random individual variation of this form in the old animals. Noteworthy no variations have been detected in the EIIIB region (90% EIIIB-). These data suggest a role for the V and EIIIA regions, but not for the EIIIB, during the ageing process at least in brain, since no variations were detected in kidney between the 6- and 24-month-old animals.
在多种生理情况下,细胞间和细胞与基质相互作用中纤连蛋白(FN)功能的调节是通过不同同工型的选择性表达来实现的,在大鼠中,这些同工型是由分子的至少三个区域(EIIIA、EIIIB和V)的可变剪接产生的。关于单个可变剪接区域差异加工的调控,我们已经收集了大量信息,但到目前为止,对于同一转录本中这三个区域可能的协同表达却知之甚少。我们使用长距离RT-PCR系统表明,大多数剪接调控对于每个单独区域是自主的,但我们也观察到与EIIIB-变体相关的EIIIA+形式的优先表达,这种表达与年龄无关。此外,对单个区域的分析显示,在衰老过程中大脑中出现了有趣的变化。在6个月和24个月大的大鼠大脑之间,V120形式减少(从57%降至39%),而尽管EIIIA-形式在幼鼠中普遍存在(65%),但在老年动物中这种形式存在个体随机变化。值得注意的是,在EIIIB区域未检测到变化(90%为EIIIB-)。这些数据表明,至少在大脑衰老过程中,V和EIIIA区域发挥了作用,而EIIIB区域没有,因为在6个月和24个月大的动物肾脏之间未检测到变化。