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痘苗相关激酶2A小跨膜结构域的纯化、表征及功能位点预测

Purification, characterization and functional site prediction of the vaccinia-related kinase 2A small transmembrane domain.

作者信息

Puja Rashmi, Chakraborty Ayon, Dutta Shubhankar, Bose Kakoli

机构信息

Integrated Biophysics and Structural Biology Lab, ACTREC, Tata Memorial Centre, Tata Memorial Centre, Sector 22, Kharghar, Navi Mumbai 410210, India.

BARC Training School Complex, Homi Bhabha National Institute, Anushaktinagar, Mumbai 400094, India.

出版信息

MethodsX. 2022 Apr 16;9:101704. doi: 10.1016/j.mex.2022.101704. eCollection 2022.

Abstract

Vaccinia-related kinases (VRK) are serine-threonine kinases that regulate several signaling pathways. The isoform-VRK2A of one such kinase VRK2 controls cell stress response by interacting with TAK1, a mitogen-activated protein 3 kinase (MAP3K), via its partly cytosolic C-terminal transmembrane domain (VTMD). To establish the driving force and identify the key residues of the VRK2A-TAK1 interaction, we expressed and purified the standalone 3.6 kDa VTMD in the bacterial system using a unique and atypical two-step approach, when the effort to obtain full-length VRK2A remained unsuccessful. Characterization of biophysical properties demonstrated that VTMD domain maintains its structural integrity. Furthermore, dissecting the VRK2A-TAK1 binding interface using tools provided important cues toward engineering the VRK2A-TAK1 interface to modulate its functions with desired characteristics. Most importantly, this novel purification strategy demonstrates its universal applicability in protein biochemistry research by serving as a model system for obtaining difficult-to-purify small proteins or domains.•VRK2A is a highly disordered transmembrane (TM) kinase, whose TM domain interacts with TAK1 (transforming growth factor-β-activated kinase).•The standalone VRK2A-TM domain (VTMD) was purified using affinity chromatography followed by two-step centricon based approach.•Biophysical and analyses confirmed structural integrity of the domain.

摘要

痘苗病毒相关激酶(VRK)是调节多种信号通路的丝氨酸 - 苏氨酸激酶。其中一种激酶VRK2的亚型VRK2A通过其部分胞质的C末端跨膜结构域(VTMD)与促分裂原活化蛋白3激酶(MAP3K)TAK1相互作用,从而控制细胞应激反应。为了确定VRK2A - TAK1相互作用的驱动力并识别关键残基,当获取全长VRK2A的努力仍未成功时,我们采用独特且非典型的两步法在细菌系统中表达并纯化了独立的3.6 kDa VTMD。生物物理性质表征表明VTMD结构域保持其结构完整性。此外,使用相关工具剖析VRK2A - TAK1结合界面为改造VRK2A - TAK1界面以调节其具有所需特性的功能提供了重要线索。最重要的是,这种新颖的纯化策略通过作为获取难以纯化的小蛋白或结构域的模型系统,证明了其在蛋白质生物化学研究中的普遍适用性。

•VRK2A是一种高度无序的跨膜(TM)激酶,其TM结构域与TAK1(转化生长因子 - β激活激酶)相互作用。

•独立的VRK2A - TM结构域(VTMD)通过亲和色谱法,随后采用基于两步中空纤维浓缩器的方法进行纯化。

•生物物理和分析证实了该结构域的结构完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04c1/9062753/934a760fd524/ga1.jpg

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