Fanghänel Jörg, Akiyama Hirotada, Uchida Chiyoko, Uchida Takafumi
Center for Interdisciplinary Research, Graduate School of Agricultural Science, Tohoku University, Sendai, Miyagi 981-8555, Japan.
FEBS Lett. 2006 May 29;580(13):3237-45. doi: 10.1016/j.febslet.2006.04.087. Epub 2006 May 6.
We investigated the enzyme activity of peptidyl prolyl cis/trans isomerases (PPIases) in brain, testis, lung, liver, and mouse embryonic fibroblasts (MEF) of Pin1+/+ and Pin1-/- mice. The aim of this study is to determine if other PPIases can substitute for the loss of Pin1 activity in Pin1-/- mice and what influence Pin1 depletion has on the activities of other PPIases members. The results show that high PPIase activities of Pin1 are found in organs that have the tendency to develop Pin1 knockout phenotypes and, therefore, provide for the first time an enzymological basis for these observations. Furthermore we determined the specific activity (k(cat)/K(M)) of endogenous Pin1 and found that it is strongly reduced as compared with the recombinant protein in all investigated organs. These results suggest that posttranslational modifications may influence the PPIase activity in vivo. The activities originating from cyclophilin and FKBP are not influenced by the Pin1 knockout, but a basal enzymatic activity towards phosphorylated substrates could be found in Pin1-/- lysates. Real time PCR experiments of all PPIases in different mouse organs and MEF of Pin1+/+ and Pin1-/- mice support the finding and reveal the specific expression profiles of PPIases in mice.
我们研究了Pin1+/+和Pin1-/-小鼠的脑、睾丸、肺、肝及小鼠胚胎成纤维细胞(MEF)中肽基脯氨酰顺/反异构酶(PPIase)的酶活性。本研究的目的是确定其他PPIase是否能替代Pin1-/-小鼠中Pin1活性的丧失,以及Pin1缺失对其他PPIase成员的活性有何影响。结果显示,在具有出现Pin1基因敲除表型倾向的器官中发现了较高的Pin1 PPIase活性,因此首次为这些观察结果提供了酶学依据。此外,我们测定了内源性Pin1的比活性(k(cat)/K(M)),发现与所有被研究器官中的重组蛋白相比,其活性大幅降低。这些结果表明,翻译后修饰可能会影响体内的PPIase活性。亲环蛋白和FKBP的活性不受Pin1基因敲除的影响,但在Pin1-/-裂解物中可发现对磷酸化底物的基础酶活性。对Pin1+/+和Pin1-/-小鼠不同器官及MEF中所有PPIase进行的实时PCR实验支持了这一发现,并揭示了小鼠中PPIase的特异性表达谱。