首页> 美国卫生研究院文献>Molecular and Cellular Biology >The Peptidyl Prolyl cis/trans Isomerase FKBP38 Determines Hypoxia-Inducible Transcription Factor Prolyl-4-Hydroxylase PHD2 Protein Stability
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The Peptidyl Prolyl cis/trans Isomerase FKBP38 Determines Hypoxia-Inducible Transcription Factor Prolyl-4-Hydroxylase PHD2 Protein Stability

机译:肽脯氨酰顺/反异构酶FKBP38确定缺氧诱导的转录因子脯氨酰-4-羟化酶PHD2蛋白的稳定性

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摘要

The heterodimeric hypoxia-inducible transcription factors (HIFs) are central regulators of the response to low oxygenation. HIF-α subunits are constitutively expressed but rapidly degraded under normoxic conditions. Oxygen-dependent hydroxylation of two conserved prolyl residues by prolyl-4-hydroxylase domain-containing enzymes (PHDs) targets HIF-α for proteasomal destruction. We identified the peptidyl prolyl cis/trans isomerase FK506-binding protein 38 (FKBP38) as a novel interactor of PHD2. Yeast two-hybrid, glutathione S-transferase pull-down, coimmunoprecipitation, colocalization, and mammalian two-hybrid studies confirmed specific FKBP38 interaction with PHD2, but not with PHD1 or PHD3. PHD2 and FKBP38 associated with their N-terminal regions, which contain no known interaction motifs. Neither FKBP38 mRNA nor protein levels were regulated under hypoxic conditions or after PHD inhibition, suggesting that FKBP38 is not a HIF/PHD target. Stable RNA interference-mediated depletion of FKBP38 resulted in increased PHD hydroxylation activity and decreased HIF protein levels and transcriptional activity. Reconstitution of FKBP38 expression abolished these effects, which were independent of the peptidyl prolyl cis/trans isomerase activity. Downregulation of FKBP38 did not affect PHD2 mRNA levels but prolonged PHD2 protein stability, suggesting that FKBP38 is involved in PHD2 protein regulation.
机译:异二聚体缺氧诱导转录因子(HIFs)是对低氧反应的主要调节因子。 HIF-α亚基组成型表达,但在常氧条件下迅速降解。含脯氨酰-4-羟化酶结构域的酶(PHD)的两个保守脯氨酰残基的氧依赖性羟基化作用将HIF-α靶向于蛋白酶体破坏。我们确定肽基脯氨酰顺/反异构酶FK506结合蛋白38(FKBP38)作为PHD2的新型相互作用者。酵母双杂交,谷胱甘肽S-转移酶下拉,免疫共沉淀,共定位和哺乳动物双杂交研究证实了FKBP38与PHD2有特异性相互作用,但与PHD1或PHD3没有相互作用。 PHD2和FKBP38与它们的N端区域相关,后者不包含已知的相互作用基序。在缺氧条件下或抑制PHD后,FKBP38 mRNA和蛋白水平均未得到调节,这表明FKBP38不是HIF / PHD靶标。稳定的RNA干扰介导的FKBP38消耗导致PHD羟基化活性增加,HIF蛋白水平和转录活性降低。 FKBP38表达的重建消除了这些影响,这独立于肽基脯氨酰顺/反异构酶活性。 FKBP38的下调不会影响PHD2 mRNA水平,但会延长PHD2蛋白的稳定性,这表明FKBP38参与了PHD2蛋白的调节。

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