Department of Oncological Sciences, The Icahn School of Medicine at Mount Sinai, New York, New York, USA.
Department of Pharmacological Sciences, The Icahn School of Medicine at Mount Sinai, New York, New York, USA; Drug Discovery Institute, The Icahn School of Medicine at Mount Sinai, New York, New York, USA.
J Biol Chem. 2024 Mar;300(3):105752. doi: 10.1016/j.jbc.2024.105752. Epub 2024 Feb 13.
Cullin (CUL)-RING (Really Interesting New Gene) E3 ubiquitin (Ub) ligases (CRLs) are the largest E3 family. The E3 CRL core ligase is a subcomplex formed by the CUL C-terminal domain bound with the ROC1/RBX1 RING finger protein, which acts as a hub that mediates and organizes multiple interactions with E2, Ub, Nedd8, and the ARIH family protein, thereby resulting in Ub transfer to the E3-bound substrate. This report describes the modulation of CRL-dependent ubiquitination by small molecule compounds including KH-4-43, #33, and suramin, which target the CRL core ligases. We show that both KH-4-43 and #33 inhibit the ubiquitination of CK1α by CRL4. However, either compound's inhibitory effect on this reaction is significantly reduced when a neddylated form of CRL4 is used. On the other hand, both #33 and KH-4-43 inhibit the ubiquitination of β-catenin by CRL1 and Nedd8-CRL1 almost equally. Thus, neddylation of CRL1 does not negatively impact the sensitivity to inhibition by #33 and KH-4-43. These findings suggest that the effects of neddylation to alter the sensitivity of CRL inhibition by KH-4-43/#33 is dependent upon the specific CRL type. Suramin, a compound that targets CUL's basic canyon, can effectively inhibit CRL1/4-dependent ubiquitination regardless of neddylation status, in contrast to the results observed with KH-4-43/#33. This observed differential drug sensitivity of KH-4-43/#33 appears to echo CUL-specific Nedd8 effects on CRLs as revealed by recent high-resolution structural biology efforts. The highly diversified CRL core ligase structures may provide opportunities for specific targeting by small molecule modulators.
Cullin(CUL)-RING(真正有趣的新基因)E3 泛素(Ub)连接酶(CRLs)是最大的 E3 家族。E3 CRL 核心连接酶是由 CUL C 端结构域与 ROC1/RBX1 RING 指蛋白形成的亚复合物,作为一个枢纽,介导并组织与 E2、Ub、Nedd8 和 ARIH 家族蛋白的多种相互作用,从而导致 Ub 转移到 E3 结合的底物上。本报告描述了小分子化合物包括 KH-4-43、#33 和苏拉明对 CRL 核心连接酶的调节作用,这些小分子化合物可调节 CRL 依赖性泛素化。我们表明,KH-4-43 和#33 均抑制 CRL4 对 CK1α 的泛素化。然而,当使用 neddylated 形式的 CRL4 时,任一化合物对该反应的抑制作用都会显著降低。另一方面,#33 和 KH-4-43 对 CRL1 和 Nedd8-CRL1 对 β-连环蛋白的泛素化具有相同的抑制作用。因此,CRL1 的 neddylation 不会影响其对#33 和 KH-4-43 的敏感性。这些发现表明,neddylation 对改变 KH-4-43/#33 抑制 CRL 的敏感性的影响取决于特定的 CRL 类型。苏拉明是一种靶向 CUL 碱性峡谷的化合物,可有效抑制 CRL1/4 依赖性泛素化,而与 KH-4-43/#33 观察到的结果相反,与 neddylation 状态无关。与 KH-4-43/#33 观察到的这种差异药物敏感性似乎反映了最近的高分辨率结构生物学研究揭示的 CUL 特异性 Nedd8 对 CRL 的影响。高度多样化的 CRL 核心连接酶结构可能为小分子调节剂的特异性靶向提供机会。