Combination Therapies with CDK4/6 Inhibitors to Treat KRAS-Mutant Pancreatic Cancer

被引:65
|
作者
Goodwin, Craig M. [1 ]
Waters, Andrew M. [1 ]
Klomp, Jennifer E. [1 ]
Javaid, Sehrish [2 ]
Bryant, Kirsten L. [1 ,3 ]
Stalnecker, Clint A. [1 ]
Drizyte-Miller, Kristina [1 ]
Papke, Bjoern [1 ,4 ,5 ,6 ]
Yang, Runying [1 ]
Amparo, Amber M. [1 ]
Ozkan-Dagliyan, Irem
Baldelli, Elisa [7 ]
Calvert, Valerie [7 ]
Pierobon, Mariaelena [7 ]
Sorrentino, Jessica A. [8 ]
Beelen, Andrew P. [8 ]
Bublitz, Natalie [4 ,5 ,6 ]
Luethen, Mareen [4 ,5 ,6 ]
Wood, Kris C. [9 ]
Petricoin III, Emanuel F. [7 ]
Sers, Christine [4 ,5 ,6 ]
McRee, Autumn J. [10 ]
Cox, Adrienne D. [1 ,11 ]
Der, Channing J. [1 ]
机构
[1] Univ N Carolina, Lineberger Comprehens Canc Ctr, Chapel Hill, NC USA
[2] Univ N Carolina, Program Oral & Craniofacial Biomed, Chapel Hill, NC USA
[3] Univ N Carolina, Dept Pharmacol, Chapel Hill, NC USA
[4] Charite Univ Med Berlin, Inst Pathol, Lab Mol Tumor Pathol & Syst Biol, Berlin, Germany
[5] German Canc Res Ctr, German Canc Consortium DKTK, Heidelberg, Germany
[6] Berlin Inst Hlth BIH, Berlin, Germany
[7] George Mason Univ, Ctr Appl Prote & Mol Med, Fairfax, VA USA
[8] G1 Therapeut, Res Triangle Pk, NC USA
[9] Duke Univ, Dept Pharmacol & Canc Biol, Durham, NC USA
[10] Univ N Carolina, Dept Med, Chapel Hill, NC USA
[11] Univ N Carolina, Dept Radiat Oncol, Chapel Hill, NC USA
关键词
CELL-CYCLE; SENESCENCE; MODELS; DEGRADATION; SUPPRESSION; PATHWAYS; SURVIVAL; NETWORK; GROWTH; MYC;
D O I
10.1158/0008-5472.CAN-22-0391
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Mutational loss of CDKN2A (encoding p16INK4A) tumor-suppressor function is a key genetic step that complements activa-tion of KRAS in promoting the development and malignant growth of pancreatic ductal adenocarcinoma (PDAC). However, pharma-cologic restoration of p16INK4A function with inhibitors of CDK4 and CDK6 (CDK4/6) has shown limited clinical efficacy in PDAC. Here, we found that concurrent treatment with both a CDK4/6 inhibitor (CDK4/6i) and an ERK-MAPK inhibitor (ERKi) syner-gistically suppresses the growth of PDAC cell lines and organoids by cooperatively blocking CDK4/6i-induced compensatory upregula-tion of ERK, PI3K, antiapoptotic signaling, and MYC expression. On the basis of these findings, a Phase I clinical trial was initiated to evaluate the ERKi ulixertinib in combination with the CDK4/6i palbociclib in patients with advanced PDAC (NCT03454035). As inhibition of other proteins might also counter CDK4/6i-mediated signaling changes to increase cellular CDK4/6i sensitivity, a CRISPR-Cas9 loss-of-function screen was conducted that revealed a spectrum of functionally diverse genes whose loss enhanced CDK4/6i growth inhibitory activity. These genes were enriched around diverse signaling nodes, including cell-cycle regulatory proteins centered on CDK2 activation, PI3K-AKT-mTOR signal -ing, SRC family kinases, HDAC proteins, autophagy-activating pathways, chromosome regulation and maintenance, and DNA damage and repair pathways. Novel therapeutic combinations were validated using siRNA and small-molecule inhibitor-based approaches. In addition, genes whose loss imparts a survival advantage were identified (e.g., RB1, PTEN, FBXW7), suggesting possible resistance mechanisms to CDK4/6 inhibition. In summary, this study has identified novel combinations with CDK4/6i that may have clinical benefit to patients with PDAC.Significance: CRISPR-Cas9 screening and protein activity map-ping reveal combinations that increase potency of CDK4/6 inhibitors and overcome drug-induced compensations in pancreatic cancer.
引用
收藏
页码:141 / 157
页数:17
相关论文
共 50 条
  • [31] A combination therapy for KRAS-mutant lung cancer by targeting synthetic lethal partners of mutant KRAS
    Xiufeng Pang
    Mingyao Liu
    Chinese Journal of Cancer, 2016, 35 (11) : 571 - 573
  • [32] A combination therapy for KRAS-mutant lung cancer by targeting synthetic lethal partners of mutant KRAS
    Pang, Xiufeng
    Liu, Mingyao
    CHINESE JOURNAL OF CANCER, 2016, 35 : 92
  • [33] Improving Breast Cancer Therapy With CDK4/6 Inhibitors
    Jaganathan, Hamsa
    Overstreet, Karen
    Reed, Elizabeth
    CLINICAL BREAST CANCER, 2014, 14 (06) : 379 - 380
  • [34] Predicting Response to CDK4/6 Inhibitors in Breast Cancer
    Schultz, Emily
    Hamilton, Deanna
    Wang, Jianxin
    Witkiewicz, Agnieszka
    LABORATORY INVESTIGATION, 2023, 103 (03) : S208 - S208
  • [35] CDK4/6 inhibitors in breast cancer: spotting the difference
    Perez-Garcia, Jose Manuel
    Cortes, Javier
    Llombart-Cussac, Antonio
    NATURE MEDICINE, 2021, 27 (11) : 1868 - 1869
  • [36] Strategy of combining CDK4/6 inhibitors with other therapies and mechanisms of resistance
    Xue, Yingfei
    Zhai, Jie
    INTERNATIONAL JOURNAL OF CLINICAL AND EXPERIMENTAL PATHOLOGY, 2024, 17 (07): : 189 - 207
  • [37] CDK4/6 Inhibitors in the Treatment of Metastatic Breast Cancer
    Ettl, Johannes
    Huober, Jens
    Lueftner, Diana
    Marme, Frederik
    Wuerstlein, Rachel
    BREAST CARE, 2017, 12 (02) : 118 - 120
  • [38] CDK4/6 inhibitors in breast cancer: spotting the difference
    Jose Manuel Perez-Garcia
    Javier Cortes
    Antonio Llombart-Cussac
    Nature Medicine, 2021, 27 : 1868 - 1869
  • [39] The role of CDK4/6 inhibitors in early breast cancer
    Gil-Gil, Miguel
    Alba, Emilio
    Gavila, Joaquin
    de la Haba-Rodriguez, Juan
    Ciruelos, Eva
    Tolosa, Pablo
    Candini, Daniele
    Llombart-Cussac, Antonio
    BREAST, 2021, 58 : 160 - 169
  • [40] CDK6 overexpression promotes resistance to CDK4/6 inhibitors in breast cancer
    Li, Qing
    Razavi, Pedram
    Li, Zhiqiang
    Paula, Arnaud F. Da Cruz
    Brogi, Edi
    Scaltriti, Maurizio
    Reis-Filho, Jorge S.
    Chandarlapaty, Sarat
    CANCER RESEARCH, 2019, 79 (13)