University of Liverpool, Department of Molecular and Clinical Cancer Medicine, 6 West Derby St, Liverpool L7 8TX, UK.
Edge Hill University, Faculty of Health, Social Care & Medicine, St Helens Road, Ormskirk, Lancashire L39 4QP, UK.
J Mol Biol. 2024 Feb 15;436(4):168434. doi: 10.1016/j.jmb.2023.168434. Epub 2024 Jan 3.
Certain members of the ADP-ribosyltransferase superfamily (ARTD or PARP enzymes) catalyse ADP-ribosylation in response to cellular stress, DNA damage and viral infection and are upregulated in various tumours. PARP9, its binding partner DTX3L and PARP14 protein levels are significantly correlated in head and neck squamous cell carcinoma (HNSCC) and other tumour types though a mechanism where PARP9/DTX3L regulates PARP14 post-transcriptionally. Depleting PARP9, DTX3L or PARP14 expression in HNSCC or HeLa cell lines decreases cell survival through a reduction of proliferation and an increase in apoptosis. A partial rescue of survival was achieved by expressing a PARP14 truncation containing a predicted eukaryotic type I KH domain. KH-like domains were also found in PARP9 and in DTX3L and contributed to protein-protein interactions between PARP9-DTX3L and PARP14-DTX3L. Homodimerization of DTX3L was also coordinated by a KH-like domain and was disrupted by site-specific mutation. Although, cell survival promoted by PARP14 did not require ADP-ribosyltransferase activity, interaction of DTX3L in vitro suppressed PARP14 auto-ADP-ribosylation and promoted trans-ADP-ribosylation of PARP9 and DTX3L. In summary, we characterised PARP9-DTX3L-PARP14 interactions important to pro-survival signalling in HNSCC cells, albeit in PARP14 catalytically independent fashion.
某些 ADP-核糖基转移酶超家族成员(PARP 酶)在细胞应激、DNA 损伤和病毒感染时催化 ADP-核糖基化,在各种肿瘤中上调。PARP9 及其结合伴侣 DTX3L 和 PARP14 蛋白水平在头颈部鳞状细胞癌(HNSCC)和其他肿瘤类型中显著相关,尽管 PARP9/DTX3L 在后转录水平调节 PARP14 的机制尚不清楚。在 HNSCC 或 HeLa 细胞系中耗尽 PARP9、DTX3L 或 PARP14 的表达,通过减少增殖和增加细胞凋亡来降低细胞存活率。通过表达包含预测的真核 I 型 KH 结构域的 PARP14 截断体,部分挽救了存活率。PARP9 和 DTX3L 中也发现了 KH 样结构域,并促进了 PARP9-DTX3L 和 PARP14-DTX3L 之间的蛋白-蛋白相互作用。DTX3L 的同源二聚化也由 KH 样结构域协调,并通过特定的点突变被破坏。尽管 PARP14 促进的细胞存活不需要 ADP-核糖基转移酶活性,但 DTX3L 的体外相互作用抑制了 PARP14 的自身 ADP-核糖基化,并促进了 PARP9 和 DTX3L 的转 ADP-核糖基化。总之,我们描述了 PARP9-DTX3L-PARP14 相互作用,这些相互作用对 HNSCC 细胞中的生存信号很重要,尽管是以 PARP14 催化独立的方式。