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由泛素选择性伴侣CDC48(UFD1/NPL4)介导的加工后的膜结合SPT23转录因子的动员。

Mobilization of processed, membrane-tethered SPT23 transcription factor by CDC48(UFD1/NPL4), a ubiquitin-selective chaperone.

作者信息

Rape M, Hoppe T, Gorr I, Kalocay M, Richly H, Jentsch S

机构信息

Department of Molecular Cell Biology, Max Planck Institute of Biochemistry, Am Klopferspitz 18a, 82152, Martinsried, Germany.

出版信息

Cell. 2001 Nov 30;107(5):667-77. doi: 10.1016/s0092-8674(01)00595-5.

Abstract

The OLE pathway of yeast regulates the level of the ER-bound enzyme Delta9-fatty acid desaturase OLE1, thereby controlling membrane fluidity. A central component of this regulon is the transcription factor SPT23, a homolog of mammalian NF-kappaB. SPT23 is synthesized as an inactive, ER membrane-anchored precursor that is activated by regulated ubiquitin/proteasome-dependent processing (RUP). We now show that SPT23 dimerizes prior to processing and that the processed molecule, p90, retains its ubiquitin modification and initially remains tethered to its unprocessed, membrane-bound SPT23 partner. Subsequently, p90 is liberated from its partner for nuclear targeting by the activity of the chaperone-like CDC48(UFD1/NPL4) complex. Remarkably, this enzyme binds preferentially ubiquitinated substrates, suggesting that CDC48(UFD1/NPL4) is qualified to selectively remove ubiquitin conjugates from protein complexes.

摘要

酵母的OLE途径调节内质网结合酶Delta9-脂肪酸去饱和酶OLE1的水平,从而控制膜流动性。该调控子的核心成分是转录因子SPT23,它是哺乳动物NF-κB的同源物。SPT23最初作为一种无活性的、内质网膜锚定的前体合成,通过受调控的泛素/蛋白酶体依赖性加工(RUP)被激活。我们现在发现,SPT23在加工前会二聚化,并且加工后的分子p90保留其泛素修饰,并最初仍与未加工的、膜结合的SPT23伙伴相连。随后,p90通过伴侣样CDC48(UFD1/NPL4)复合物的活性从其伙伴中释放出来,用于核靶向。值得注意的是,这种酶优先结合泛素化底物,这表明CDC48(UFD1/NPL4)有资格从蛋白质复合物中选择性地去除泛素缀合物。

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