首页> 外文期刊>Indian heart journal >The expression of the sperm-specific lactate dehydrogenase gene Ldh-c in plateau pika (Ochotona curzoniae) cardiac muscle and its effect on the anaerobic glycolysis
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The expression of the sperm-specific lactate dehydrogenase gene Ldh-c in plateau pika (Ochotona curzoniae) cardiac muscle and its effect on the anaerobic glycolysis

机译:精子特异性乳酸脱氢酶基因LDH-C在高原PIKA(Ochotona Curzoniae)心肌的表达及其对厌氧糖醇的影响

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The plateau pika (Ochotona curzoniae) has a strong adaptability to hypoxic plateau environment. We found that the sperm-specific lactate dehydrogenase (LDH-C4) gene Ldh-c expressed in plateau pika cardiac muscle. In order to shed light on the effect of LDH-C4 on the anaerobic glycolysis in plateau pika cardiac muscle, 20 pikas were randomly divided into the inhibitor group and the control group, and the sample size of each group was 10. The pikas of inhibitor group were injected with 1 mL 1 mol/L N-isopropyl oxamate, a specific LDH-C4 inhibitor, in biceps femoris muscle of hind legs, each leg with 500 μL. The pikas of control group were injected with the same volume of normal saline (0.9% NaCl). The mRNA and protein expression levels of Ldh-c gene in plateau pika cardiac muscle were determined by real-time PCR and Western blot. The activities of LDH, and the contents of lactate (LD) and ATP in cardiac muscle were compared between the inhibitor group and the control group. The results showed that 1) the expression levels of Ldh-c mRNA and protein were 0.47 ± 0.06 and 0.68 ± 0.08, respectively; 2) 30 min after injection of 1 mL 1 mol/L N-isopropyl oxamate in biceps femoris muscle, the concentration of N-isopropyl oxamate in blood was 0.08 mmol/L; 3) in cardiac muscle of the inhibitor group and the control group, the LDH activities were (6.18 ± 0.48) U/mg and (9.08 ± 0.58) U/mg, the contents of LD were (0.21 ± 0.03) mmol/g and (0.26 ± 0.04) mmol/g, and the contents of ATP were (4.40 ± 0.69) nmol/mg and (6.18 ± 0.73) nmol/mg (P 0.01); 5) the inhibition rates of N-isopropyl oxamate to LDH, LD and ATP were 31.98%, 20.90% and 28.70%, respectively. The results suggest that Ldh-c expresses in cardiac muscle of plateau pika, and the pika cardiac muscle may get at least 28% ATP for its activities by LDH-C4 catalyzed anaerobic glycolysis, which reduces the dependence on oxygen and enhances the adaptation to the hypoxic environments. The plateau pika (Ochotona curzoniae) has a strong adaptability to hypoxic plateau environment. We found that the sperm-specific lactate dehydrogenase (LDH-C4) gene Ldh-c expressed in plateau pika cardiac muscle. In order to shed light on the effect of LDH-C4 on the anaerobic glycolysis in plateau pika cardiac muscle, 20 pikas were randomly divided into the inhibitor group and the control group, and the sample size of each group was 10. The pikas of inhibitor group were injected with 1 mL 1 mol/L N-isopropyl oxamate, a specific LDH-C4 inhibitor, in biceps femoris muscle of hind legs, each leg with 500 μL. The pikas of control group were injected with the same volume of normal saline (0.9% NaCl). The mRNA and protein expression levels of Ldh-c gene in plateau pika cardiac muscle were determined by real-time PCR and Western blot. The activities of LDH, and the contents of lactate (LD) and ATP in cardiac muscle were compared between the inhibitor group and the control group. The results showed that 1) the expression levels of Ldh-c mRNA and protein were 0.47 ± 0.06 and 0.68 ± 0.08, respectively; 2) 30 min after injection of 1 mL 1 mol/L N-isopropyl oxamate in biceps femoris muscle, the concentration of N-isopropyl oxamate in blood was 0.08 mmol/L; 3) in cardiac muscle of the inhibitor group and the control group, the LDH activities were (6.18 ± 0.48) U/mg and (9.08 ± 0.58) U/mg, the contents of LD were (0.21 ± 0.03) mmol/g and (0.26 ± 0.04) mmol/g, and the contents of ATP were (4.40 ± 0.69) nmol/mg and (6.18 ± 0.73) nmol/mg (P < 0.01); 5) the inhibition rates of N-isopropyl oxamate to LDH, LD and ATP were 31.98%, 20.90% and 28.70%, respectively. The results suggest that Ldh-c expresses in cardiac muscle of plateau pika, and the pika cardiac muscle may get at least 28% ATP for its activities by LDH-C4 catalyzed anaerobic glycolysis, which reduces the dependence on oxygen and enhances the adaptation to the hypoxic environments.
机译:高原Pika(Ochotona Curzoniae)对缺氧高原环境具有很强的适应性。我们发现在高原Pika心肌中表达的精选特异性乳酸脱氢酶(LDH-C4)基因LDH-C。为了阐明LDH-C4对高原Pika心肌的厌氧糖酵解的影响,将20个Pikas随机分为抑制剂组和对照组,每组的样品大小为10.抑制剂的哌珊将组注射1ml 1 mol / l N-异丙基,一种特定的LDH-C4抑制剂,在后腿的二头肌股骨肌肉中,每条腿有500μl。用相同体积的生理盐水(0.9%NaCl)注射对照组的哌菌。通过实时PCR和Western印迹测定高原Pika心肌肌肉中LDH-C基因的mRNA和蛋白表达水平。在抑制剂组和对照组之间比较了LDH的活性和心肌中的乳酸(LD)和ATP的含量。结果表明,1)LDH-C mRNA和蛋白质的表达水平分别为0.47±0.06和0.68±0.08; 2)注射1mL 1mol / L N-异丙基的30分钟在二头肌股骨肌肉中,血液中N-异丙基的浓度为0.08mmol / L; 3)在抑制剂组的心肌和对照组中,LDH活性为(6.18±0.48)U / Mg和(9.08±0.58)U / Mg,LD的含量为(0.21±0.03)mmol / g和(0.26±0.04)mmol / g,ATP的含量(4.40±0.69)nmol / mg和(6.18±0.73)nmol / mg(p <0.01); 5)将N-异丙基对LDH,LD和ATP的抑制率分别为31.98%,20.90%和28.70%。结果表明,通过LDH-C4催化的厌氧糖溶解,Pika心肌中的LDH-C表达了哌啶肌肌肉,可获得至少28%的ATP,这减少了对氧气的依赖性并增强了对缺氧环境。高原Pika(Ochotona Curzoniae)对缺氧高原环境具有很强的适应性。我们发现在高原Pika心肌中表达的精选特异性乳酸脱氢酶(LDH-C4)基因LDH-C。为了阐明LDH-C4对高原Pika心肌的厌氧糖酵解的影响,将20个Pikas随机分为抑制剂组和对照组,每组的样品大小为10.抑制剂的哌珊将组注射1ml 1 mol / l N-异丙基,一种特定的LDH-C4抑制剂,在后腿的二头肌股骨肌肉中,每条腿有500μl。用相同体积的生理盐水(0.9%NaCl)注射对照组的哌菌。通过实时PCR和Western印迹测定高原Pika心肌肌肉中LDH-C基因的mRNA和蛋白表达水平。在抑制剂组和对照组之间比较了LDH的活性和心肌中的乳酸(LD)和ATP的含量。结果表明,1)LDH-C mRNA和蛋白质的表达水平分别为0.47±0.06和0.68±0.08; 2)注射1mL 1mol / L N-异丙基的30分钟在二头肌股骨肌肉中,血液中N-异丙基的浓度为0.08mmol / L; 3)在抑制剂组的心肌和对照组中,LDH活性为(6.18±0.48)U / Mg和(9.08±0.58)U / Mg,LD的含量为(0.21±0.03)mmol / g和(0.26±0.04)mmol / g,ATP的含量为(4.40±0.69)Nmol / mg和(6.18±0.73)Nmol / mg(P <0.01); 5)将N-异丙基对LDH,LD和ATP的抑制率分别为31.98%,20.90%和28.70%。结果表明,通过LDH-C4催化的厌氧糖溶解,Pika心肌中的LDH-C表达了哌啶肌肌肉,可获得至少28%的ATP,这减少了对氧气的依赖性并增强了对缺氧环境。

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