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首页> 外文期刊>Biochemistry and Cell Biology >Effect of FKBP65, a putative elastin chaperone, on the coacervation of tropoelastin in vitro
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Effect of FKBP65, a putative elastin chaperone, on the coacervation of tropoelastin in vitro

机译:FKBP65(一种推测的弹性蛋白伴侣)对原弹性蛋白凝聚的影响

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摘要

FKBP65 is a protein of the endoplasmic reticulum that is relatively abundant in elastin-producing cells and is associated with tropoelastin in the secretory pathway. To test an earlier suggestion by Davis and co-workers that FKBP65 could act as an intracellular chaperone for elastin, we obtained recombinant FKBP65 (rFKBP65) by expressing it in E. coli and examined its effect on the coacervation characteristics of chicken aorta tropoelastin (TE) using an in vitro tur-bidimetric assay. Our results reveal that rFKBP65 markedly promotes the initiation of coacervation of TE without significantly affecting the temperature of onset of coacervation. This effect shows saturation at a 1:2 molar ratio of TE to rFKBP65. By contrast, FKBP12, a peptidyl prolyl isomerase, has a negligible effect on TE coacervation. Moreover, the effect of rFKBP65 on TE coacervation is unaffected by the addition of rapamycin, an inhibitor of peptidyl prolyl isomerase (PPIase) activity. These observations rule out the involvement of the PPIase activity of rFKBP65 in modulating the coacervation of TE. Additional experiments using a polypeptide model of TE showed that rFKBP65, while promoting coacervation, may retard the maturation of this model polypeptide into larger aggregates. Based on these results, we suggest that FKBP65 may act as an elastin chaperone in vivo by controlling both the coacervation and the maturation stages of its self-assembly into fibrils.
机译:FKBP65是一种内质网蛋白,在产生弹性蛋白的细胞中相对丰富,并且在分泌途径中与原弹性蛋白有关。为了检验Davis及其同事先前提出的FKBP65可以充当弹性蛋白的细胞内伴侣的建议,我们通过在大肠杆菌中表达重组FKBP65(rFKBP65)来研究其对鸡主动脉原弹性蛋白(TE)凝聚特征的影响。 )进行体外比浊分析。我们的结果表明,rFKBP65显着促进TE凝聚的开始,而不会显着影响凝聚开始的温度。该效果显示TE与rFKBP65摩尔比为1:2时达到饱和。相比之下,肽基脯氨酰异构酶FKBP12对TE凝聚作用的影响可忽略不计。此外,rFKBP65对TE凝聚的作用不受雷帕霉素(一种肽基脯氨酰异构酶(PPIase)活性的抑制剂)的添加的影响。这些观察结果排除了rFKBP65的PPIase活性参与调节TE的凝聚。使用TE多肽模型的其他实验表明,rFKBP65在促进凝聚的同时,可能会阻止该模型多肽成熟为更大的聚集体。基于这些结果,我们建议FKBP65可以通过控制其自组装成纤维的凝聚和成熟阶段,在体内充当弹性蛋白伴侣。

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