PO.MCB03.01 · 分子与细胞生物学
代谢应激条件决定结直肠癌中MEK1/2抑制的MAPKAPK2依赖性效力
Metabolic stress conditions dictate MAPKAPK2-dependent efficiency of MEK1/2 inhibition in colorectal carcinoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
激酶MAPKAPK2调控细胞存活、增殖和死亡,在结直肠癌(CRC)中上调,并与肿瘤生长和进展相关。然而,它如何与其他信号通路(如MEK/ERK)协同调控肿瘤进展仍不清楚。实体瘤常遭受代谢应激,尤其是葡萄糖缺乏。在此,我们证明CRC中MAPKAPK2蛋白水平在应激条件(如葡萄糖缺乏和治疗处理)下调控细胞命运决定。虽然MAPKAPK2表达是CRC体外生长的限制因素,但在葡萄糖受限条件下,耗竭MAPKAPK2或药物抑制其活性可为CRC细胞提供存活优势。将CRC细胞置于低葡萄糖环境导致ERK1/2介导的MAPKAPK2下降,从而促进存活。此外,在葡萄糖受限条件下,MAPKAPK2活性降低的细胞对trametinib的敏感性较低。利用转录组学分析,我们发现葡萄糖缺乏和MAPKAPK2耗竭激活了与代谢应激期间存活相关的通路。这种关系在CRC患者(TCGA)中也得到观察——MAPKAPK2低表达的肿瘤具有更高的ERK1/2激活和上调的应激诱导通路,导致生存较差。最后,MAPKAPK2调节了CRC类器官、皮下肿瘤和患者来源异种移植(PDX)的生长,且MAPKAPK2水平降低会在体外和体内降低trametinib的疗效。总体而言,本研究确定了葡萄糖缺乏期间MEK/ERK与p38/MAPKAPK2信号通路之间的相互关系以支持细胞存活,并揭示MAPKAPK2丧失可能是导致基于trametinib的抗癌治疗疗效降低以及CRC患者预后不良的一种机制。
查看英文原文 English abstract
The kinase MAPKAPK2 regulates cell survival, proliferation, and death, and is upregulated in colorectal carcinoma (CRC) where it is associated with tumor growth and progression. However, how it regulates tumor progression in conjunction with other signaling pathways, such as MEK/ERK, remains elusive. Solid tumors are often subjected to metabolic stress, notably glucose deprivation. Here we demonstrate that MAPKAPK2 protein levels in CRC regulate cell fate decision during stress conditions, such as glucose deprivation and therapeutic treatment. While MAPKAPK2 expression is a limiting factor for CRC growth in vitro , depleting MAPKAPK2 or inhibiting its activity pharmacologically provides a survival advantage to CRC cells under glucose limiting conditions. Subjecting CRC cells to low glucose resulted in an ERK1/2-mediated decline in MAPKAPK2 to promote survival. Additionally, cells with reduced MAPKAPK2 activity were less sensitive to trametinib under glucose limiting conditions. Utilizing transcriptomic profiling, we found that glucose deprivation and MAPKAPK2 depletion activate pathways associated with survival during metabolic stress. This relationship was also observed in CRC patients (TCGA), where tumors with low MAPKAPK2 expression had higher ERK1/2 activation and upregulated stress-induced pathways, leading to poor survival. Finally, MAPKAPK2 modulated growth of CRC organoids, subcutaneous tumors, and patient-derived xenografts (PDX), and reduced MAPKAPK2 levels decreased efficacy of trametinib, in vitro and in vivo . Overall, this study identifies an interrelationship between MEK/ERK and p38/MAPKAPK2 signaling pathways during glucose deprivation to support cell survival and features MAPKAPK2 loss as a possible mechanism leading to reduced efficacy of trametinib-based anticancer therapy and poor patient outcomes in CRC.
利益披露 Disclosure
N. Kumari, None..
X. Chen, None..
A. M. Baldwin, None..
K. I. Clemons, None..
M. Alharakeh, None..
L. Calisto, None..
B. Kumar, None..
Q. Zhang, None..
J. Min, None..
B. Xiao, None..
A. B. Singh, None..
B. Wang, None..
B. J. North, None.