van Deursen J, Wieringa B
Department of Cell Biology and Histology, University Nijmegen, The Netherlands.
Mol Cell Biochem. 1994 Apr-May;133-134:263-74. doi: 10.1007/BF01267959.
To study the physiological role of the creatine kinase/phosphocreatine (CK/PCr) system in cells and tissues with a high and fluctuating energy demand we have concentrated on the site-directed inactivation of the B- and M-CK genes encoding the cytosolic CK protein subunits. In our approach we used homologous recombination in mouse embryonic stem (ES) cells from strain 129/Sv. Using targeting constructs based on strain 129/Sv isogenic DNA we managed to ablate the essential exons of the B-CK and M-CK genes at reasonably high frequencies. ES clones with fully disrupted B-CK and two types of M-CK gene mutations, a null (M-CK-) and leaky (M-CK1) mutation, were used to generate chimaeric mutant mice via injection in strain C57BL/6 derived blastocysts. Chimaeras with the B-CK null mutation have no overt abnormalities but failed to transmit the mutation to their offspring. For the M-CK- and M-CK1 mutations successful transmission was achieved and heterozygous and homozygous mutant mice were bred. Animals deficient in MM-CK are phenotypically normal but lack muscular burst activity. Fluxes through the CK reaction in skeletal muscle are highly impaired and fast fibres show adaptation in cellular architecture and storage of glycogen. Mice homozygous for the leaky M-CK allele, which have 3-fold reduced MM-CK activity, show normal fast fibres but CK fluxes and burst activity are still not restored to wildtype levels.
为了研究肌酸激酶/磷酸肌酸(CK/PCr)系统在能量需求高且波动的细胞和组织中的生理作用,我们集中于对编码胞质CK蛋白亚基的B型和M型CK基因进行定点失活。在我们的方法中,我们使用了来自129/Sv品系的小鼠胚胎干细胞(ES细胞)中的同源重组。利用基于129/Sv同基因DNA的靶向构建体,我们成功地以相当高的频率切除了B-CK和M-CK基因的必需外显子。具有完全破坏的B-CK和两种类型M-CK基因突变(一种无效突变(M-CK-)和一种渗漏突变(M-CK1))的ES克隆,通过注射到C57BL/6品系来源的囊胚中用于产生嵌合突变小鼠。具有B-CK无效突变的嵌合体没有明显异常,但未能将突变传递给它们的后代。对于M-CK-和M-CK1突变,实现了成功传递,并培育出了杂合和纯合突变小鼠。缺乏MM-CK的动物在表型上是正常的,但缺乏肌肉爆发活性。骨骼肌中通过CK反应的通量严重受损,快肌纤维在细胞结构和糖原储存方面表现出适应性变化。携带渗漏型M-CK等位基因的纯合小鼠,其MM-CK活性降低了3倍,快肌纤维表现正常,但CK通量和爆发活性仍未恢复到野生型水平。