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Adrenaline and glycogenolysis in skeletal muscle during exercise: a study in adrenalectomised humans

机译:运动过程中骨骼肌的肾上腺素和糖原分解:一项针对肾上腺切除的人的研究

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摘要

class="enumerated" style="list-style-type:decimal">The role of adrenaline in regulating muscle glycogenolysis and hormone-sensitive lipase (HSL) activity during exercise was examined in six adrenaline-deficient bilaterally adrenalectomised, adrenocortico-hormonal-substituted humans (Adr) and in six healthy control individuals (Con).Subjects cycled for 45 min at ∼70 % maximal pulmonary O2 uptake (V̇O2,max) followed by 15 min at ∼86 %V̇O2,max either without (−Adr and Con) or with (+Adr) adrenaline infusion that elevated plasma adrenaline levels (45 min, 4.49 ± 0.69 nmol l−1; 60 min, 12.41 ± 1.80 nmol l−1). Muscle samples were obtained at 0, 45 and 60 min of exercise.In −Adr and Con, muscle glycogen was similar at rest (−Adr, 409 ± 19 mmol (kg dry wt)−1; Con, 453 ± 24 mmol (kg dry wt)−1) and following exercise (−Adr, 237 ± 52 mmol (kg dry wt)−1; Con, 227 ± 50 mmol (kg dry wt)−1). Muscle lactate, glucose-6-phosphate and glucose were similar in −Adr and Con, whereas glycogen phosphorylase (a/a+b× 100%) and HSL (% phosphorylated) activities increased during exercise in Con only. Adrenaline infusion increased activities of phosphorylase and HSL as well as blood lactate concentrations compared with those in −Adr, but did not enhance glycogen breakdown (+Adr, glycogen following exercise: 274 ± 55 mmol (kg dry wt)−1) in contracting muscle.The present findings demonstrate that during exercise muscle glycogenolysis can occur in the absence of adrenaline, and that adrenaline does not enhance muscle glycogenolysis in exercising adrenalectomised subjects. Although adrenaline increases the glycogen phosphorylase activity it is not essential for glycogen breakdown in contracting muscle. Finally, a novel finding is that the activity of HSL in human muscle is increased in exercising man and this is due, at least partly, to stimulation by adrenaline.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在六名肾上腺素缺乏的双侧肾上腺切除,肾上腺皮质激素替代人类(Adr)和六名健康对照组(Con)中检查了肾上腺素在运动过程中调节肌肉糖原分解和激素敏感性脂肪酶(HSL)活性的作用。 li> li> li受试者在〜70%的最大肺氧气摄入量(V̇O2,max)下循环45分钟,然后在〜86%V̇O2,max的条件下循环15分钟,不使用(-Adr和Con)或使用(+ Adr)肾上腺素输注血浆肾上腺素水平升高(45分钟,4.49±0.69 nmol l -1 ; 60分钟,12.41±1.80 nmol l -1 )。在运动的0、45和60分钟时获得肌肉样品。 在-Adr和Con中,静止时的肌肉糖原相似(-Adr,409±19 mmol(kg干重)- 1 ; Con,453±24 mmol(kg干重) -1 )和运动(-Adr,237±52 mmol(kg干重) −1 ; Con,227±50 mmol(kg干重) -1 )。肌肉乳酸,6-磷酸葡萄糖和葡萄糖在-Adr和Con中相似,而糖原磷酸化酶(a / a + b×100%)和HSL(磷酸化%)活性仅在Con中运动。与-Adr相比,肾上腺素输注增加了磷酸化酶和HSL的活性以及血乳酸浓度,但并未增强糖原分解(+ Adr,运动后的糖原:274±55 mmol(kg干重)<-1> < / sup>)收缩肌肉。 本研究结果表明,在运动过程中,不存在肾上腺素时可发生肌肉糖原分解,而肾上腺素切除的受试者中肾上腺素不会增强肌肉糖原分解作用。尽管肾上腺素增加了糖原磷酸化酶的活性,但对于收缩肌肉中糖原的分解并不是必需的。最后,一个新发现是,锻炼人体时,人类肌肉中HSL的活性增加,这至少部分是由于肾上腺素的刺激。

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