Institute of Biological Chemistry, Academia Sinica, Taipei, Taiwan.
High-Field Nuclear Magnetic Resonance Center, Academia Sinica, Taipei, Taiwan.
J Biol Chem. 2024 May;300(5):107230. doi: 10.1016/j.jbc.2024.107230. Epub 2024 Mar 25.
Arsenite-induced stress granule (SG) formation can be cleared by the ubiquitin-proteasome system aided by the ATP-dependent unfoldase p97. ZFAND1 participates in this pathway by recruiting p97 to trigger SG clearance. ZFAND1 contains two An1-type zinc finger domains (ZF1 and ZF2), followed by a ubiquitin-like domain (UBL); but their structures are not experimentally determined. To shed light on the structural basis of the ZFAND1-p97 interaction, we determined the atomic structures of the individual domains of ZFAND1 by solution-state NMR spectroscopy and X-ray crystallography. We further characterized the interaction between ZFAND1 and p97 by methyl NMR spectroscopy and cryo-EM. N spin relaxation dynamics analysis indicated independent domain motions for ZF1, ZF2, and UBL. The crystal structure and NMR structure of UBL showed a conserved β-grasp fold homologous to ubiquitin and other UBLs. Nevertheless, the UBL of ZFAND1 contains an additional N-terminal helix that adopts different conformations in the crystalline and solution states. ZFAND1 uses the C-terminal UBL to bind to p97, evidenced by the pronounced line-broadening of the UBL domain during the p97 titration monitored by methyl NMR spectroscopy. ZFAND1 binding induces pronounced conformational heterogeneity in the N-terminal domain of p97, leading to a partial loss of the cryo-EM density of the N-terminal domain of p97. In conclusion, this work paved the way for a better understanding of the interplay between p97 and ZFAND1 in the context of SG clearance.
砷诱导的应激颗粒 (SG) 形成可以被泛素蛋白酶体系统清除,该系统由 ATP 依赖性解折叠酶 p97 辅助。ZFAND1 通过招募 p97 触发 SG 清除来参与该途径。ZFAND1 包含两个 An1 型锌指结构域(ZF1 和 ZF2),后面跟着一个泛素样结构域(UBL);但它们的结构尚未通过实验确定。为了阐明 ZFAND1-p97 相互作用的结构基础,我们通过溶液态 NMR 光谱学和 X 射线晶体学确定了 ZFAND1 各个结构域的原子结构。我们通过甲基 NMR 光谱学和 cryo-EM 进一步表征了 ZFAND1 和 p97 之间的相互作用。N 自旋弛豫动力学分析表明 ZF1、ZF2 和 UBL 具有独立的结构域运动。UBL 的晶体结构和 NMR 结构显示出与泛素和其他 UBL 同源的保守β-抓握折叠。然而,ZFAND1 的 UBL 包含一个额外的 N 端螺旋,在晶体和溶液状态下采用不同的构象。ZFAND1 使用 C 端 UBL 与 p97 结合,这一点可以通过甲基 NMR 光谱学监测的 p97 滴定过程中 UBL 结构域的明显线宽变宽来证明。ZFAND1 的结合诱导了 p97 N 端结构域明显的构象异质性,导致 p97 N 端结构域的 cryo-EM 密度部分丢失。总之,这项工作为更好地理解 SG 清除过程中 p97 和 ZFAND1 之间的相互作用铺平了道路。