Suppr超能文献

蛋白质半合成强调了保守赖氨酸在酸感应离子通道激活和脱敏中的作用。

Protein semisynthesis underscores the role of a conserved lysine in activation and desensitization of acid-sensing ion channels.

机构信息

Department of Drug Design and Pharmacology, University of Copenhagen, 2100 Copenhagen, Denmark.

Department of Drug Design and Pharmacology, University of Copenhagen, 2100 Copenhagen, Denmark; Department of Cell and Chemical Biology, Leiden University Medical Centre, Leiden, the Netherlands.

出版信息

Cell Chem Biol. 2024 May 16;31(5):1000-1010.e6. doi: 10.1016/j.chembiol.2023.11.013. Epub 2023 Dec 18.

Abstract

Acid-sensing ion channels (ASICs) are trimeric ion channels that open a cation-conducting pore in response to proton binding. Excessive ASIC activation during prolonged acidosis in conditions such as inflammation and ischemia is linked to pain and stroke. A conserved lysine in the extracellular domain (Lys211 in mASIC1a) is suggested to play a key role in ASIC function. However, the precise contributions are difficult to dissect with conventional mutagenesis, as replacement of Lys211 with naturally occurring amino acids invariably changes multiple physico-chemical parameters. Here, we study the contribution of Lys211 to mASIC1a function using tandem protein trans-splicing (tPTS) to incorporate non-canonical lysine analogs. We conduct optimization efforts to improve splicing and functionally interrogate semisynthetic mASIC1a. In combination with molecular modeling, we show that Lys211 charge and side-chain length are crucial to activation and desensitization, thus emphasizing that tPTS can enable atomic-scale interrogations of membrane proteins in live cells.

摘要

酸敏离子通道(ASICs)是三聚体离子通道,在质子结合时会打开阳离子通道。在炎症和缺血等情况下,长时间酸中毒时 ASIC 的过度激活与疼痛和中风有关。细胞外结构域中保守的赖氨酸(mASIC1a 中的 Lys211)被认为在 ASIC 功能中起关键作用。然而,由于用天然存在的氨基酸替代 Lys211 不可避免地改变了多个物理化学参数,因此用传统的诱变技术很难剖析其确切贡献。在这里,我们使用串联蛋白转位拼接(tPTS)来掺入非典型赖氨酸类似物,研究 Lys211 对 mASIC1a 功能的贡献。我们进行了优化工作以提高拼接效率,并对半合成 mASIC1a 进行功能检测。结合分子建模,我们表明 Lys211 的电荷和侧链长度对激活和脱敏至关重要,这强调了 tPTS 可以实现在活细胞中对膜蛋白进行原子尺度的检测。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验