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利用 HHR23B 的泛素样结构域分离哺乳动物 26S 蛋白酶体和 p97/VCP 复合物,揭示了新型的蛋白酶体相关蛋白。

Isolation of mammalian 26S proteasomes and p97/VCP complexes using the ubiquitin-like domain from HHR23B reveals novel proteasome-associated proteins.

机构信息

Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Biochemistry. 2009 Mar 24;48(11):2538-49. doi: 10.1021/bi802198q.

Abstract

Recent studies, mainly in yeast, have identified various cofactors that associate with the 26S proteasome and appear to influence its function. To identify these proteins in different cells and physiological states, we developed a method to gently and rapidly isolate 26S proteasomes and associated proteins without the need for genetic modifications of the proteasome. This method is based on the affinity of this complex for the ubiquitin-like (UBL) domain of hHR23B and elution with a competing polypeptide containing a ubiquitin-interacting motif. Associated with 26S proteasomes from rat muscle were a variety of known proteasome-interacting proteins, activators, and ubiquitin conjugates. In addition, we identified over 40 proteins not previously known to associate with the 26S proteasome, some of which were tightly associated with the proteasome in a substoichiometric fashion, e.g., the deubiquitinating enzymes USP5/isopeptidase T and USP7/HAUSP and the ubiquitin ligases ARF-BP1/HUWE1 and p600/UBR4. By altering buffer conditions, we also purified by this approach complexes of the ATPase p97/VCP associated with its adaptor proteins Ufd1-Npl4, p47, SAKS1, and FAF1, all of which contain ubiquitin-binding motifs. These complexes were isolated with ubiquitin conjugates bound and were not previously known to bind to the UBL domain of hHR23B. These various UBL-interacting proteins, dubbed the UBL interactome, represent a network of proteins that function together in ubiquitin-dependent proteolysis, and the UBL method offers many advantages for studies of the diversity, functions, and regulation of 26S proteasomes and p97 complexes under different conditions.

摘要

最近的研究主要在酵母中进行,已经确定了各种与 26S 蛋白酶体结合并似乎影响其功能的辅因子。为了在不同的细胞和生理状态下鉴定这些蛋白质,我们开发了一种温和而快速分离 26S 蛋白酶体及其相关蛋白质的方法,而无需对蛋白酶体进行遗传修饰。该方法基于该复合物与 hHR23B 的泛素样 (UBL) 结构域的亲和力,并通过含有泛素相互作用基序的竞争多肽洗脱。与大鼠肌肉中的 26S 蛋白酶体结合的有各种已知的蛋白酶体相互作用蛋白、激活剂和泛素缀合物。此外,我们还鉴定了 40 多种以前未知与 26S 蛋白酶体结合的蛋白质,其中一些以亚化学计量的方式与蛋白酶体紧密结合,例如去泛素化酶 USP5/异肽酶 T 和 USP7/HAUSP 以及泛素连接酶 ARF-BP1/HUWE1 和 p600/UBR4。通过改变缓冲条件,我们还通过这种方法纯化了与衔接蛋白 Ufd1-Npl4、p47、SAKS1 和 FAF1 相关的 ATP 酶 p97/VCP 复合物,所有这些蛋白都含有泛素结合基序。这些复合物与结合的泛素缀合物一起被分离,并且以前不知道与 hHR23B 的 UBL 结构域结合。这些各种 UBL 相互作用蛋白被称为 UBL 相互作用组,代表了一个在泛素依赖性蛋白水解中共同发挥作用的蛋白质网络,UBL 方法为研究不同条件下 26S 蛋白酶体和 p97 复合物的多样性、功能和调节提供了许多优势。

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