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CDMS 分析完整的 19S、20S、26S 和 30S 蛋白酶体:在低 pH 值下存在更高阶 20S 组装体的证据†。

CDMS Analysis of Intact 19S, 20S, 26S, and 30S Proteasomes: Evidence for Higher-Order 20S Assemblies at a Low pH†.

机构信息

Department of Chemistry, Indiana University, Bloomington, Indiana 47401, United States.

Department of Molecular Biosciences, University of Texas, Austin Texas 78712, United States.

出版信息

Anal Chem. 2023 Aug 22;95(33):12209-12215. doi: 10.1021/acs.analchem.3c00472. Epub 2023 Aug 8.

Abstract

Charge detection mass spectrometry (CDMS) was examined as a means of studying proteasomes. To this end, the following masses of the 20S, 19S, 26S, and 30S proteasomes from (budding yeast) were measured: (20S) = 738.8 ± 2.9 kDa, (19S) = 926.2 ± 4.8 kDa, (26S) = 1,637.0 ± 7.6 kDa, and (30S) = 2,534.2 ± 10.8 kDa. Under some conditions, larger (20S) (where = 1 to ∼13) assemblies are observed; the 19S regulatory particle also oligomerizes, but to a lesser extent, forming (19S) complexes (where = 1 to 4, favoring the = 3 trimer). The (20S) oligomers are favored in vitro, as the pH of the solution is lowered (from 7.0 to 5.4, in a 20 mM ammonium acetate solution) and may be related to in vivo proteasome storage granules that are observed under carbon starvation. From measurements of (20S) ( = 1 to ∼13) species, it appears that each multimer retains all 28 proteins of the 20S complex subunit. Several types of structures that might explain the formation of (20S) assemblies are considered. We stress that each structural type [hypothetical planar, raft-like geometries (where individual proteasomes associate through side-by-side interactions); elongated, rodlike geometries (where subunits are bound end-to-end); and geometries that are roughly spherical (arising from aggregation through nonspecific subunit interactions)] is highly speculative but still interesting to consider, and a short discussion is provided. The utility of CDMS for characterizing proteasomes and related oligomers is discussed.

摘要

电荷检测质谱 (CDMS) 被视为研究蛋白酶体的一种手段。为此,我们测量了来自酿酒酵母的 20S、19S、26S 和 30S 蛋白酶体的以下质量:(20S)=738.8±2.9 kDa,(19S)=926.2±4.8 kDa,(26S)=1637.0±7.6 kDa,和(30S)=2534.2±10.8 kDa。在某些条件下,会观察到更大的(20S)(其中 =1 到 ∼13)组装体;19S 调节颗粒也会寡聚化,但程度较小,形成(19S)复合物(其中 =1 到 4,有利于 = 3 三聚体)。(20S)寡聚体在体外是有利的,因为溶液的 pH 值降低(从 7.0 降低到 5.4,在 20 mM 乙酸铵溶液中),并且可能与在碳饥饿下观察到的体内蛋白酶体储存颗粒有关。从(20S)( =1 到 ∼13)物种的测量结果来看,似乎每个多聚体都保留了 20S 复合物亚基的所有 28 种蛋白质。考虑了几种可能解释(20S)组装体形成的结构类型。我们强调,每种结构类型[假设的平面、筏状几何形状(其中单个蛋白酶体通过并排相互作用结合);拉长的、棒状几何形状(其中亚基首尾相连结合);以及大致呈球形的几何形状(通过非特异性亚基相互作用聚集形成)]都具有高度推测性,但仍值得考虑,我们提供了简短的讨论。还讨论了 CDMS 用于表征蛋白酶体和相关寡聚体的实用性。

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