Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, Arkansas 72701, United States.
J Chem Inf Model. 2023 Jul 10;63(13):4125-4137. doi: 10.1021/acs.jcim.3c00319. Epub 2023 Jun 19.
The novel multidomain protein, cpSRP43, is a unique subunit of the post-translational chloroplast signal recognition particle (cpSRP) targeting pathway in higher plants. The cpSRP pathway is responsible for targeting and insertion of light-harvesting chlorophyll a/b binding proteins (LHCPs) to the thylakoid membrane. Upon emergence into the stroma, LHCPs form a soluble transit complex with the cpSRP heterodimer, which is composed of cpSRP43 and cpSRP54. cpSRP43 is irreplaceable as a chaperone to LHCPs in their translocation to the thylakoid membrane and remarkable in its ability to dissolve aggregates of LHCPs without the need for external energy input. In previous studies, cpSRP43 has demonstrated significant flexibility and interdomain dynamics. In this study, we explore the structural stability and flexibility of cpSRP43 using a combination of computational and experimental techniques and find that this protein is concurrently highly stable and flexible. In addition to microsecond-level unbiased molecular dynamics (MD), biased MD simulations based on system-specific collective variables are used along with biophysical experimentation to explain the basis of the flexibility and stability of cpSRP43, showing that the free and cpSRP54-bound cpSRP43 has substantially different conformations and conformational dynamics.
新型多功能蛋白 cpSRP43 是高等植物中翻译后叶绿体信号识别颗粒(cpSRP)靶向途径的独特亚基。cpSRP 途径负责将捕光叶绿素 a/b 结合蛋白(LHCP)靶向并插入类囊体膜。在进入基质后,LHCP 与 cpSRP 异二聚体(由 cpSRP43 和 cpSRP54 组成)形成可溶性转运复合物。cpSRP43 作为 LHCP 向类囊体膜转运的伴侣蛋白是不可替代的,其在溶解 LHCP 聚集体方面的能力也很显著,而无需外部能量输入。在以前的研究中,cpSRP43 表现出显著的灵活性和结构域间动力学。在这项研究中,我们使用计算和实验技术相结合的方法来探索 cpSRP43 的结构稳定性和灵活性,发现这种蛋白质同时具有高度的稳定性和灵活性。除了微秒级无偏分子动力学(MD)模拟外,还使用基于系统特定集体变量的有偏 MD 模拟以及生物物理实验来解释 cpSRP43 灵活性和稳定性的基础,表明游离和与 cpSRP54 结合的 cpSRP43 具有截然不同的构象和构象动力学。