Department of Pharmacology, Wayne State University School of Medicine, Detroit, MI 48201, USA.
Yeast. 2010 Oct;27(10):801-16. doi: 10.1002/yea.1771.
Yeast cell lysates produced by mechanical glass bead disruption are widely used in a variety of applications, including for the analysis of native function, e.g. protein-protein interaction, enzyme assays and membrane fractionations. Below, we report a striking case of protein denaturation and aggregation that is induced by this lysis protocol. Most of this analysis focuses on the type 1 casein kinase Yck2, which normally tethers to the plasma membrane through C-terminal palmitoylation. Surprisingly, when cells are subjected to glass bead disruption, non-palmitoylated, cytosolic forms of the kinase denature and aggregate, while membrane-associated forms, whether attached through their native palmitoyl tethers or through a variety of artificial membrane-tethering sequences, are wholly protected from denaturation and aggregation. A wider look at the yeast proteome finds that, while the majority of proteins resist glass bead-induced aggregation, a significant subset does, in fact, succumb to such denaturation. Thus, yeast researchers should be aware of this potential artifact when embarking on biochemical analyses that employ glass bead lysates to look at native protein function. Finally, we demonstrate an experimental utility for glass bead-induced aggregation, using its fine discrimination of membrane-associated from non-associated Yck2 forms to discern fractional palmitoylation states of Yck2 mutants that are partially defective for palmitoylation.
通过机械玻璃珠破裂产生的酵母细胞裂解物广泛应用于各种应用中,包括用于分析天然功能,例如蛋白质-蛋白质相互作用、酶测定和膜分离。下面,我们报告了一个由这种裂解方案引起的蛋白质变性和聚集的惊人案例。该分析主要集中在 1 型酪蛋白激酶 Yck2 上,该激酶通常通过 C 端棕榈酰化与质膜连接。令人惊讶的是,当细胞受到玻璃珠破裂时,非棕榈酰化的、胞质形式的激酶变性并聚集,而膜相关形式的激酶,无论是通过其天然棕榈酰化连接体还是通过各种人工膜连接序列连接体,都完全免受变性和聚集的影响。对酵母蛋白质组的更广泛研究发现,虽然大多数蛋白质能抵抗玻璃珠诱导的聚集,但实际上,有相当一部分蛋白质确实会发生这种变性。因此,当使用玻璃珠裂解物进行研究天然蛋白质功能的生化分析时,酵母研究人员应该意识到这种潜在的人为假象。最后,我们展示了玻璃珠诱导聚集的一个实验用途,利用其对膜相关和非相关 Yck2 形式的精细区分,来区分部分棕榈酰化缺陷的 Yck2 突变体的分数棕榈酰化状态。