AlphaFold2 assists in providing novel mechanistic insights into the interactions among the LUBAC subunits.

Chenchen Wang, Chunying Gu, Ying Lv, Hongyu Liu, Yanan Wang, Yongmei Zuo, Guangyu Jiang, Lili Liu, Jiafu Liu
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Abstract

The linear ubiquitin chain assembly complex (LUBAC) is the only known E3 ligase complex in which the ubiquitin-like (UBL) domains of SHARPIN and HOIL-1L interact with HOIP to determine the structural stability of LUBAC. The interactions between subunits within LUBAC have been a topic of extensive research. However, the impact of the LTM motif on the interaction between the UBL domains of SHARPIN and HOIL-1L with HOIP remains unclear. Here, we discover that the absence of the LTM motif in the AlphaFold2-predicted LUBAC structure alters the HOIP-UBA structure. We employ GeoPPI to calculate the changes in binding free energy (ΔG) caused by single-point mutations between subunits, simulating their protein-protein interactions. The results reveal that the presence of the LTM motif decreases the interaction between the UBL domains of SHARPIN and HOIL-1L with HOIP, leading to a decrease in the structural stability of LUBAC. Furthermore, using the AlphaFold2-predicted results, we find that HOIP (629‒695) and HOIP-UBA bind to both sides of HOIL-1L-UBL, respectively. The experiments of Gromacs molecular dynamics simulations, SPR and ITC demonstrate that the elongated domain formed by HOIP (629‒695) and HOIP-UBA, hereafter referred to as the HOIP (466‒695) structure, interacts with HOIL-1L-UBL to form a structurally stable complex. These findings illustrate the collaborative interaction between HOIP-UBA and HOIP (629‒695) with HOIL-1L-UBL, which influences the structural stability of LUBAC.
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AlphaFold2 有助于从新的机制角度深入了解 LUBAC 亚基之间的相互作用。
线性泛素链组装复合物(LUBAC)是唯一已知的E3连接酶复合物,其中SHARPIN和HOIL-1L的泛素样(UBL)结构域与HOIP相互作用,决定了LUBAC的结构稳定性。LUBAC 内亚基之间的相互作用一直是广泛研究的课题。然而,LTM基序对SHARPIN和HOIL-1L的UBL结构域与HOIP相互作用的影响仍不清楚。在这里,我们发现在 AlphaFold2 预测的 LUBAC 结构中缺少 LTM 基序会改变 HOIP-UBA 结构。我们利用 GeoPPI 计算了亚基间单点突变引起的结合自由能(ΔG)的变化,模拟了它们之间的蛋白质相互作用。结果显示,LTM基序的存在降低了SHARPIN和HOIL-1L的UBL结构域与HOIP的相互作用,从而导致LUBAC结构稳定性的降低。此外,利用 AlphaFold2 预测的结果,我们发现 HOIP(629-695)和 HOIP-UBA 分别与 HOIL-1L-UBL 的两侧结合。Gromacs 分子动力学模拟、SPR 和 ITC 实验证明,HOIP(629-695)和 HOIP-UBA 形成的拉长结构域(以下简称为 HOIP(466-695)结构)与 HOIL-1L-UBL 相互作用,形成结构稳定的复合物。这些发现说明了 HOIP-UBA 和 HOIP (629-695) 与 HOIL-1L-UBL 之间的协同作用,从而影响了 LUBAC 的结构稳定性。
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