Ghafouri Zahra, Rasouli Mehdi
PhD Student, Department of Clinical Biochemistry, Mazandaran University of Medical Sciences, Sari, Mazandaran, Iran.
Professor, Department of Clinical Biochemistry and Immunogenetic Research Center, Mazandaran University of Medical Sciences, Sari, Mazandaran, Iran.
J Clin Diagn Res. 2017 Apr;11(4):BC05-BC08. doi: 10.7860/JCDR/2017/24566.9618. Epub 2017 Apr 1.
Homogenization of animal tissues with cold Perchloric Acid (PCA) produces two fractions of glycogen, Acid Soluble Glycogen (ASG) and Acid Insoluble Glycogen (AIG).
To determine some physicochemical characteristics of muscle glycogen fractions in two groups of rat.
An experimental study was conducted on two groups of five male rats. Rats in control group were kept at rest and in case group on 30 minutes physical activity. The content of carbohydrate, protein, phosphate, index and relative Molecular Weights (MWs) were determined for glycogen fractions.
Total glycogen decreased following muscular activity (1.40±0.08, mg/g wet muscle vs. 0.97±0.11, p<0.05) and the change occurred totally in ASG (1.02±0.07 vs. 0.57±0.07, p=0.017), whereas, AIG changed insignificantly (0.39±0.05 vs. 0.36±0.02, p=0.5). The protein content of AIG was about 5.5 times of ASG fraction. The ratio of carbohydrate to protein was 0.33±0.01 (mg/mg) in ASG and decreased to 0.19±0.02, p=0.01 after 30 minute activity. This ratio in AIG was about 6% of ASG fraction and did not change significantly during physical activity. The ratio of phosphate to protein was three times in ASG relative to AIG at rest and did not change following activity. The index of molecular weight was calculated for each fraction of glycogen as the ratio of concentration per osmolality (mg/mmol). The index was 1.82±0.02 for ASG at rest and decreased significantly to 1.07±0.12, p<0.05 following 30 minutes activity. The index did not change significantly for AIG fraction (0.56±0.05 vs. 0.48±0.10, p=0.4). The relative MW of the fractions of ASG to AIG was 3.3±0.3 at rest and decreased significantly to 2.2±0.6, p<0.05 following 30 minutes activity.
Two fractions of muscle glycogen, ASG and AIG, differ in the relative carbohydrate: protein content and ASG have a higher mean of MW and is more metabolic active form.
用冷高氯酸(PCA)对动物组织进行匀浆处理可产生两种糖原组分,即酸溶性糖原(ASG)和酸不溶性糖原(AIG)。
测定两组大鼠肌肉糖原组分的一些物理化学特性。
对两组各五只雄性大鼠进行实验研究。对照组大鼠保持静止,实验组大鼠进行30分钟的体力活动。测定糖原组分的碳水化合物、蛋白质、磷酸盐含量、指数和相对分子量(MW)。
肌肉活动后总糖原减少(1.40±0.08,mg/g湿肌肉 vs. 0.97±0.11,p<0.05),且变化完全发生在ASG中(1.02±0.07 vs. 0.57±0.07,p = 0.017),而AIG变化不显著(0.39±0.05 vs. 0.36±0.02,p = 0.5)。AIG的蛋白质含量约为ASG组分的5.5倍。ASG中碳水化合物与蛋白质的比例为0.33±0.01(mg/mg),活动30分钟后降至0.19±0.02,p = 0.01。AIG中的该比例约为ASG组分的6%,在体力活动期间无显著变化。静止时ASG中磷酸盐与蛋白质的比例是AIG的三倍,活动后无变化。计算糖原各组分的分子量指数,即浓度与渗透压之比(mg/mmol)。静止时ASG的指数为1.82±0.02,活动30分钟后显著降至1.07±0.12,p<0.05。AIG组分的指数无显著变化(0.56±0.05 vs. 0.48±0.10,p = 0.4)。静止时ASG与AIG组分的相对MW为3.3±0.3,活动30分钟后显著降至2.2±0.6,p<0.05。
肌肉糖原的两种组分ASG和AIG在相对碳水化合物:蛋白质含量方面存在差异,且ASG具有更高的平均MW,是代谢更活跃的形式。