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心脏定向性腺苷酸环化酶VI的可控表达可增强收缩功能。

Controlled expression of cardiac-directed adenylylcyclase type VI provides increased contractile function.

作者信息

Gao Mei Hua, Bayat Hamed, Roth David M, Yao Zhou Jin, Drumm Jeffrey, Burhan John, Hammond H Kirk

机构信息

Collateral Therapeutics Incorporated, San Diego, CA, USA.

出版信息

Cardiovasc Res. 2002 Nov;56(2):197-204. doi: 10.1016/s0008-6363(02)00539-4.

Abstract

OBJECTIVE

We have previously shown that cardiac-directed expression of adenylycyclase type VI (AC(VI)) increases heart function in transgenic mice, and improves heart function and survival in murine cardiomyopathy. However, a potential problem of crossbreeding paradigms that use lines with two constitutively active transgenes is that results can be obfuscated by interactions between transgenes during growth and development.

METHODS

To develop a model that could be used subsequently to address this generic problem, transgenic mice with tetracycline (tet)-regulated cardiac-specific expression of AC(VI) were generated. In this transgenic strain, the expression of a tet-controlled transactivator (tTA) was under control of the rat alpha-myosin heavy chain promoter. Expression of the AC(VI) gene was driven by a tet-response element (TRE) and a minimal CMV promoter.

RESULTS

Homogenates of hearts showed no change in AC(VI) protein content during tet suppression (doxycycline), confirming successful suppression of transgene expression. Removal of tet suppression for 10 days was associated with a 10-fold increase in cardiac AC(VI) protein content. A similar increase in mRNA was observed (Northern blot analysis). The estimated half-life of newly synthesized cardiac AC(VI) protein was 2-3 days. Isolated cardiac myocytes from animals that had tet-suppression removed for 10 days showed increased cAMP production in response to forskolin stimulation (Transgene Off: 15+/-6 fmol/microg; Transgene On: 39+/-14 fmol/microg; n=5 each group; P=0.004) and also to isoproterenol stimulation (Transgene Off: 20+/-5 fmol/microg; Transgene On: 31+/-12 fmol/microg; n=5 each group; P=0.035) and hearts isolated from these animals showed marked increased left ventricular peak dP/dt in response to dobutamine stimulation (P=0.009) indicating that inducible cardiac AC(VI) is functionally coupled and recruitable.

CONCLUSION

We have generated transgenic mice with controlled cardiac-specific expression of AC(VI), provided detailed information regarding the kinetics of transgene expression and suppression and estimated the half-life of cardiac AC(VI) protein to be 2-3 days. Finally, we have shown, for the first time, that controlled cardiac-directed expression of a transgene can increase cardiac myocyte cAMP generation and left ventricular contractile function.

摘要

目的

我们之前已经表明,在转基因小鼠中,心脏定向表达VI型腺苷酸环化酶(AC(VI))可增强心脏功能,并改善小鼠心肌病的心脏功能和存活率。然而,使用带有两个组成型活性转基因品系的杂交模式存在一个潜在问题,即生长发育过程中转基因之间的相互作用可能会混淆结果。

方法

为了构建一个后续可用于解决这一普遍问题的模型,我们制备了四环素(tet)调控的心脏特异性表达AC(VI)的转基因小鼠。在这个转基因品系中,四环素控制的反式激活因子(tTA)的表达受大鼠α-肌球蛋白重链启动子的控制。AC(VI)基因的表达由四环素反应元件(TRE)和最小CMV启动子驱动。

结果

在四环素抑制(强力霉素)期间,心脏匀浆中AC(VI)蛋白含量没有变化,证实了转基因表达的成功抑制。去除四环素抑制10天与心脏AC(VI)蛋白含量增加10倍相关。观察到mRNA有类似的增加(Northern印迹分析)。新合成的心脏AC(VI)蛋白的估计半衰期为2 - 3天。从去除四环素抑制10天的动物中分离出的心肌细胞,对福斯高林刺激显示出cAMP产生增加(转基因关闭:15±6 fmol/μg;转基因开启:39±14 fmol/μg;每组n = 5;P = 0.004),对异丙肾上腺素刺激也有增加(转基因关闭:20±5 fmol/μg;转基因开启:31±12 fmol/μg;每组n = 5;P = 0.035),并且从这些动物中分离出的心脏对多巴酚丁胺刺激显示左心室峰值dP/dt显著增加(P = 0.009),表明可诱导的心脏AC(VI)在功能上是偶联的且可被募集。

结论

我们制备了具有可控心脏特异性表达AC(VI)的转基因小鼠,提供了有关转基因表达和抑制动力学的详细信息,并估计心脏AC(VI)蛋白的半衰期为2 - 3天。最后,我们首次表明,可控的心脏定向转基因表达可增加心肌细胞cAMP生成和左心室收缩功能。

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