Arines Felichi Mae, Wielenga Aleksander, Burata Olive E, Garcia Francisco Narro, Stockbridge Randy B, Li Ming
Department of Molecular, Cellular, and Developmental Biology, University of Michigan, Ann Arbor, MI 48109, USA.
bioRxiv. 2023 Mar 31:2023.03.31.535002. doi: 10.1101/2023.03.31.535002.
Lysosomes achieve their function through numerous transporters that import or export nutrients across their membrane. However, technical challenges in membrane protein overexpression, purification, and reconstitution hinder our understanding of lysosome transporter function. Here, we developed a platform to overexpress and purify the putative lysine transporter Ypq1 using a constitutive overexpression system in protease- and ubiquitination-deficient yeast vacuoles. Using this method, we purified and reconstituted Ypq1 into proteoliposomes and showed lysine transport function, supporting its role as a basic amino acid transporter on the vacuole membrane. We also found that the absence of lysine destabilizes purified Ypq1 and causes it to aggregate, consistent with its propensity to be downregulated upon lysine starvation. Our approach may be useful for the biochemical characterization of many transporters and membrane proteins to understand organellar transport and regulation.
溶酶体通过众多跨膜转运营养物质进出的转运蛋白来实现其功能。然而,膜蛋白过表达、纯化和重组方面的技术挑战阻碍了我们对溶酶体转运蛋白功能的理解。在此,我们开发了一个平台,利用蛋白酶和泛素化缺陷的酵母液泡中的组成型过表达系统,过表达并纯化推定的赖氨酸转运蛋白Ypq1。使用该方法,我们将Ypq1纯化并重组到蛋白脂质体中,并展示了赖氨酸转运功能,支持其作为液泡膜上碱性氨基酸转运蛋白的作用。我们还发现,赖氨酸的缺失会使纯化的Ypq1不稳定并导致其聚集,这与其在赖氨酸饥饿时易于下调的倾向一致。我们的方法可能有助于对许多转运蛋白和膜蛋白进行生化表征,以了解细胞器运输和调控。