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NSD2 组蛋白 H3K36 二甲基化促进肺腺癌发病机制。

NSD2 dimethylation at H3K36 promotes lung adenocarcinoma pathogenesis.

机构信息

Department of Biology, Stanford University, Stanford, CA 94305, USA.

Department of Experimental Radiation Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.

出版信息

Mol Cell. 2021 Nov 4;81(21):4481-4492.e9. doi: 10.1016/j.molcel.2021.08.034. Epub 2021 Sep 22.

Abstract

The etiological role of NSD2 enzymatic activity in solid tumors is unclear. Here we show that NSD2, via H3K36me2 catalysis, cooperates with oncogenic KRAS signaling to drive lung adenocarcinoma (LUAD) pathogenesis. In vivo expression of NSD2, a hyperactive variant detected in individuals with LUAD, rapidly accelerates malignant tumor progression while decreasing survival in KRAS-driven LUAD mouse models. Pathologic H3K36me2 generation by NSD2 amplifies transcriptional output of KRAS and several complementary oncogenic gene expression programs. We establish a versatile in vivo CRISPRi-based system to test gene functions in LUAD and find that NSD2 loss strongly attenuates tumor progression. NSD2 knockdown also blocks neoplastic growth of PDXs (patient-dervived xenografts) from primary LUAD. Finally, a treatment regimen combining NSD2 depletion with MEK1/2 inhibition causes nearly complete regression of LUAD tumors. Our work identifies NSD2 as a bona fide LUAD therapeutic target and suggests a pivotal epigenetic role of the NSD2-H3K36me2 axis in sustaining oncogenic signaling.

摘要

NSD2 酶活性在实体瘤中的病因作用尚不清楚。在这里,我们表明 NSD2 通过 H3K36me2 催化与致癌 KRAS 信号协同作用,驱动肺腺癌(LUAD)发病机制。在 LUAD 患者中检测到的高活性变异体 NSD2 的体内表达可迅速加速恶性肿瘤进展,同时降低 KRAS 驱动的 LUAD 小鼠模型的存活率。NSD2 扩增 KRAS 和几个互补致癌基因表达程序的转录输出,导致病理性 H3K36me2 的产生。我们建立了一种通用的体内 CRISPRi 系统来测试 LUAD 中的基因功能,发现 NSD2 缺失强烈抑制肿瘤进展。NSD2 敲低也阻止了来自原发性 LUAD 的 PDX(患者衍生的异种移植物)的肿瘤性生长。最后,联合 NSD2 耗竭和 MEK1/2 抑制的治疗方案导致 LUAD 肿瘤几乎完全消退。我们的工作确定 NSD2 为 LUAD 的真正治疗靶点,并表明 NSD2-H3K36me2 轴在维持致癌信号中的关键表观遗传作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbbb/8571016/3a8bca21dab3/nihms-1738209-f0002.jpg

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