首页> 外文期刊>Journal of applied physiology >Small heat shock proteins translocate to the cytoskeleton in human skeletal muscle following eccentric exercise independently of phosphorylation
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Small heat shock proteins translocate to the cytoskeleton in human skeletal muscle following eccentric exercise independently of phosphorylation

机译:离心运动后,小的热休克蛋白独立于磷酸化而转移到人骨骼肌的细胞骨架中

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Small heat shock proteins (sHSPs) are a subgroup of the highly conserved family of HSPs that are stress inducible and confer resistance to cellular stress and injury. This study aimed to quantitatively examine whether type of contraction (concentric or eccentric) affects sHSPs, HSP27 and alphaB-crystallin, localization, and phosphorylation in human muscle. Vastus lateralis muscle biopsies from 11 healthy male volunteers were obtained pre- and 3 h, 24 h, and 7 days following concentric (CONC), eccentric (ECC1), and repeated bout eccentric (ECC2) exercise. No changes were apparent in a control group (n = 5) who performed no exercise. Eccentric exercise induced muscle damage, as evidenced by increased muscle force loss, perceived muscle soreness, and elevated plasma creatine kinase and myoglobin levels. Total HSP27 and alphaB-crystallin amounts did not change following any type of exercise. Following eccentric exercise (ECC1 and ECC2) phosphorylation of HSP27 at serine 15 (pHSP27-Ser15) was increased approximately 3- to 6-fold at 3 h, and palphaB-crystallin-Ser59 increased approx 10-fold at 3 h. Prior to exercise most of the sHSP and psHSP pools were present in the cytosolic compartment. Eccentric exercise resulted in partial redistribution of HSP27 (-23%) from the cytosol to the cytoskeletal fraction (approx28% for pHSP27-Ser15 and approx7% for pHSP27-Ser82), with subsequent full reversal within 24 h. alphaB-crystallin also showed partial redistribution from the cytosolic to cytoskeletal fraction (approx18% of total) 3 h post-ECC1, but not after ECC2. There was no redistribution or phosphorylation of sHSPs with CONC. Eccentric exercise results in increased sHSP phosphorylation and translocation to the cytoskeletal fraction, but the sHSP translocation is not dependent on their phosphorylation.
机译:小型热激蛋白(sHSPs)是高度保守的HSPs家族的一个亚组,它们是应激诱导的,并具有抗细胞应激和损伤的能力。这项研究旨在定量检查收缩的类型(同心或偏心)是否会影响人肌肉中的sHSPs,HSP27和alphaB-crystallin,定位和磷酸化。在同心(CONC),偏心(ECC1)和重复回旋偏心(ECC2)运动之前和之后的3小时,24小时和7天,从11位健康的男性志愿者中获得了外侧外侧肌活检。没有进行运动的对照组(n = 5)没有明显变化。离心运动会引起肌肉损伤,如肌肉力量损失增加,感觉到的肌肉酸痛以及血浆肌酸激酶和肌红蛋白水平升高所证明。任何类型的运动后,HSP27和αB-晶状体蛋白的总量没有变化。进行离心运动(ECC1和ECC2)后,丝氨酸15(pHSP27-Ser15)处HSP27的磷酸化在3小时时增加了约3至6倍,而palphaB-crystallin-Ser59在3小时时增加了约10倍。在锻炼之前,大多数sHSP和psHSP库都存在于胞质区室中。离心运动导致HSP27(-23%)从胞浆部分重新分布到细胞骨架部分(pHSP27-Ser15约为28%,pHSP27-Ser82约为7%),随后在24小时内完全逆转。 ECC1后3小时,αB-晶状体蛋白还显示出从胞浆部分到细胞骨架部分的部分重新分布(占总数的18%),但在ECC2之后没有。 sHSPs没有通过CONC重新分布或磷酸化。离心运动导致sHSP磷酸化和向细胞骨架部分的转运增加,但是sHSP转运与它们的磷酸化无关。

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