Maroney S A, Ferrel J P, Pan S, White T A, Simari R D, McVey J H, Mast A E
Blood Research Institute, Blood Center of Wisconsin, Milwaukee, WI 53201-2178, USA.
J Thromb Haemost. 2009 Jul;7(7):1106-13. doi: 10.1111/j.1538-7836.2009.03454.x. Epub 2009 Apr 24.
Mouse tissue factor pathway inhibitor (TFPI) is produced in three alternatively spliced isoforms that differ in domain structure and mechanism for cell surface binding. Tissue expression of TFPI isoforms in mice was characterized as an initial step for identification of their physiological functions.
Sequence homology demonstrates that TFPIalpha existed over 430 Ma while TFPIbeta and TFPIgamma evolved more recently. In situ hybridization studies of heart and lung did not reveal any cells exclusively expressing a single isoform. Although our previous studies have demonstrated that TFPIalpha mRNA is more prevalent than TFPIbeta or TFPIgamma mRNA in mouse tissues, western blot studies demonstrated that TFPIbeta is the primary protein isoform produced in adult tissues, while TFPIalpha is expressed during embryonic development and in placenta. Consistent with TFPIbeta as the primary isoform produced within adult vascular beds, the TFPI isoform in mouse plasma migrates like TFPIbeta in SDS-PAGE and mice have a much smaller heparin-releasable pool of plasma TFPIalpha than humans.
The data demonstrate that alternatively spliced isoforms of TFPI are temporally expressed in mouse tissues at the level of protein production. TFPIalpha and TFPIbeta are produced in embryonic tissues and in placenta while adult tissues produce almost exclusively TFPIbeta.
小鼠组织因子途径抑制剂(TFPI)以三种可变剪接异构体形式产生,这些异构体在结构域结构和细胞表面结合机制上存在差异。对小鼠TFPI异构体的组织表达进行表征是确定其生理功能的第一步。
序列同源性表明,TFPIα在4.3亿多年前就已存在,而TFPIβ和TFPIγ则是较晚进化而来的。心脏和肺的原位杂交研究未发现任何仅表达单一异构体的细胞。尽管我们之前的研究表明,TFPIα mRNA在小鼠组织中比TFPIβ或TFPIγ mRNA更普遍,但蛋白质印迹研究表明,TFPIβ是成年组织中产生的主要蛋白质异构体,而TFPIα在胚胎发育过程中和胎盘中表达。与TFPIβ作为成年血管床中产生的主要异构体一致,小鼠血浆中的TFPI异构体在SDS-PAGE中的迁移方式与TFPIβ相似,并且小鼠血浆中可被肝素释放的TFPIα池比人类小得多。
数据表明,TFPI的可变剪接异构体在小鼠组织中蛋白质产生水平上有时间性表达。TFPIα和TFPIβ在胚胎组织和胎盘中产生,而成年组织几乎只产生TFPIβ。