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Thermal activation of the bovine Hsc70 molecular chaperone at physiological temperatures: physical evidence of a molecular thermometer

机译:牛Hsc70分子伴侣在生理温度下的热活化:分子温度计的物理证据

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摘要

Defferential scanning calorimetry was used to monitor the thermal transitions of the 70 kDa heat shock cognate protein (Hsc70). Hsc70 had endothermic trasitions with midpoints (Tm) at 59°C and 63°C in the absence and presence of ATP, respectively, and a similar increase in Tm was observed using intrinsic fluorescence of tryptophan. Combined with increased exposure at 60°C of non-polar residues of Hsc70 to which the hydrophobic, fluorescent probe ANS bound, these data indicate that the endotherms represent thermal denaturation and that bound nucleotide stabilizes Hsc70. An exothermic transition (Tm=66°C) was detected by calorimetry for Hsc70-apocytochrome c (apo c) complexes. An increase in intrinsic fluorescence with the same Tm and increased turbidity indicated aggregation of the denatured Hsc70-apo c. A novel finding was an exothermic transition of Hsc70 begining at about 30°c (Tm=41°C). No changes in either intrinsic fluorescence or ANS fluorescence attributable to protein transitions were detected in this temperature range. Examination of samples run on native polyacrylamide gels indicated that this exothermic transition was not due to Hsc70 aggregation or multimer formation. However, Hsc70 was protease-resistant at 20°C, sensitive at 40°C and resistant when returned to 20°C, indicating that this exotherm is associated with a reversible conformational change. As an assay for Hsc70 chaperoning function, complex formation was measured as a function of temperature using a variety of substrates including the model unfolded protein apo c a pigeon cytochrome c fragment, a representative hydrophobic-aromatic peptide FYQLALT, and a representative hydrophobic-basic motif NIVRKKK. For all of these substrates, the amount of complex formed increased with increasing termperature over the same range as the 41°C exotherm. It is proposed that a conformational change exposes polar and charged residues in Hsc70 Which subsequently become hydrated, resulting in an active chaperone. Hsc70 may be a thermal sensor that supply of chaperoning activity with demand for it over the physiological temperature range of mammalian cells. Thermal activation of Hsc70 may also have a role in acquired thermotolerance.
机译:差示扫描量热法用于监测70 kDa热休克同源蛋白(Hsc70)的热转变。在不存在和存在ATP的情况下,Hsc70分别在59°C和63°C时具有吸热中点(Tm),并且使用色氨酸的内在荧光观察到Tm的增加。这些数据与疏水性荧光探针ANS结合的Hsc70的非极性残基在60°C的暴露增加有关,这些数据表明吸热代表热变性,结合的核苷酸稳定了Hsc70。通过量热法检测Hsc70-脱细胞色素c(apo c)复合物的放热转变(Tm = 66°C)。具有相同Tm的固有荧光的增加和浊度的增加表明变性的Hsc70-apo c的聚集。一个新颖的发现是Hsc70的放热转变始于大约30°C(Tm = 41°C)。在此温度范围内,未检测到固有荧光或ANS荧光归因于蛋白质转变的变化。在天然聚丙烯酰胺凝胶上进行的样品检查表明,这种放热转变不是由于Hsc70聚集或多聚体形成所致。但是,Hsc70在20°C时具有蛋白酶抗性,在40°C时具有敏感性,在回到20°C时具有抗性,表明该放热与可逆的构象变化有关。作为Hsc70伴侣功能的测定方法,使用多种底物,包括模型未折叠的蛋白载脂蛋白细胞色素c片段,代表性的疏水性芳香族肽FYQLALT和代表性的疏水性基础基序NIVRKKK,测量了复合物的形成与温度的关系。 。对于所有这些底物,在与41°C放热相同的范围内,随着温度的升高,形成的络合物的量也会增加。有人提出,构象变化会暴露Hsc70中的极性残基和带电残基,这些残基随后会被水合,形成活性分子伴侣。 Hsc70可能是一种热传感器,可在哺乳动物细胞的生理温度范围内提供陪伴活动并为其提供需求。 Hsc70的热激活也可能在获得的耐热性中起作用。

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