Schliselfeld Louis H, Danon Moris J
Department of Pathology, Westchester Medical Center, Valhalla, New York, USA.
Biochem Biophys Res Commun. 2002 Jan 18;290(2):874-7. doi: 10.1006/bbrc.2001.6292.
Leg muscle was biopsied and frozen for storage at -70 degrees C. from 5 wild-type mice, two knocked out acid alpha-glucosidase (GAA) gene mice, and seven glycogen synthase plus glucose muscle transporter transgenic mice. All of the wild-type mice had very little muscle glycogen (3.58 +/- 1.67 micromols glucosyl subunits per g muscle), and 52% or more of its glycogen phosphorylase activity without AMP (69% +/- 17% glycogen phosphorylase a). In contrast the GAA knockout and transgenic mice had glycogen ranging from 63 to 297 micromols glucosyl subunits per g muscle, and very little or no glycogen phosphorylase activity without 1.00 mM AMP (4.8% and less glycogen phosphorylase a). This suggests that there is an inverse relationship between mouse muscle phosphorylase a and the muscle's glycogen content.
从5只野生型小鼠、2只敲除酸性α-葡萄糖苷酶(GAA)基因的小鼠和7只糖原合酶加葡萄糖肌肉转运体转基因小鼠身上获取腿部肌肉进行活检,并在-70℃下冷冻保存。所有野生型小鼠的肌肉糖原含量都非常低(每克肌肉含3.58±1.67微摩尔葡萄糖基亚基),且其糖原磷酸化酶活性在无AMP时52%或更高(糖原磷酸化酶a为69%±17%)。相比之下,GAA基因敲除小鼠和转基因小鼠的糖原含量为每克肌肉63至297微摩尔葡萄糖基亚基,且在无1.00 mM AMP时糖原磷酸化酶活性极低或无活性(糖原磷酸化酶a为4.8%及更低)。这表明小鼠肌肉中的磷酸化酶a与肌肉糖原含量之间存在负相关关系。