Albumin -conjugated drug is irresistible by single gene mutation of endocytic system: Verification by genome-wide CRISPR-Cas9 loss -of -function screens

被引:5
作者
Yuan, Fang [1 ]
Sun, Mengnan [1 ]
Liu, Huiqin [1 ]
Qian, Feng [1 ]
机构
[1] Tsinghua Univ, Sch Pharmaceut Sci, Beijing Adv Innovat Ctr Struct Biol, Key Lab Bioorgan Phosphorus Chem & Chem Biol,Mini, Beijing 100084, Peoples R China
关键词
DELIVERY; IDENTIFICATION; KNOCKOUT; ENABLES; TARGET; TFIIH;
D O I
10.1016/j.jconrel.2020.04.035
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Albumin-conjugated drugs attain KRAS mutant cancer targeting through KRAS-enhanced macropinocytosis and intensified lysosomal degradation due to reduced neonatal Fc receptor (FcRn) expression. The cytosolic delivery of active payloads relies on endocytosis and subsequent intracellular processing of albumin delivery vehicles, wherein complex regulatory mechanisms and molecular machineries are closely involved. Despite the obvious merit of KRAS targeting, could such an endocytic process involving extra molecular regulators also bring about extra vulnerabilities to albumin-conjugated drugs, particularly, unexpected drug resistance? To assess such risks, here we performed an unbiased drug resistance mechanism comparison in pancreatic cancer, between free triptolide (TP, a potent cytotoxin) and albumin-conjugated TP, using genome-wide CRISPR-Cas9 loss-of-function screens. GTF2H5, a subunit of GTF2H transcription factor complex, was the only hit identified regardless of forms of TP treatment. With drug efficacy tests on GTF2H5 knockout clones, we further concluded that GTF2H5 deficiency conferred drug resistance primarily due to the pharmacological mechanism of action (MoA) of TP. In addition, molecules previously considered to be able to affect endocytosis and intracellular processing were not enriched during the screening with albumin-conjugated TP. With the aid of genome-wide CRISPR-Cas9 loss-of-function screens, we conclude that the pharmacological resistance of the active payload, rather than any potential loss-of-function mutations in endocytic molecular machineries, is the solely crucial drug resistance mechanism of albumin-conjugated drugs. © 2020 Elsevier B.V.
引用
收藏
页码:311 / 320
页数:10
相关论文
共 30 条
[1]  
[Anonymous], 1970, ANTILEUKEMIC N 0 118, P7194
[2]   An Inducible Lentiviral Guide RNA Platform Enables the Identification of Tumor-Essential Genes and Tumor-Promoting Mutations In Vivo [J].
Aubrey, Brandon J. ;
Kelly, Gemma L. ;
Kueh, Andrew J. ;
Brennan, Margs S. ;
O'Connor, Liam ;
Milla, Liz ;
Wilcox, Stephen ;
Tai, Lin ;
Strasser, Andreas ;
Herold, Marco J. .
CELL REPORTS, 2015, 10 (08) :1422-1432
[3]   Screening of Conditionally Reprogrammed Patient-Derived Carcinoma Cells Identifies ERCC3-MYC Interactions as a Target in Pancreatic Cancer [J].
Beglyarova, Natalya ;
Banina, Eugenia ;
Zhou, Yan ;
Mukhamadeeva, Ramilia ;
Andrianov, Grigorii ;
Bobrov, Egor ;
Lysenko, Elena ;
Skobeleva, Natalya ;
Gabitova, Linara ;
Restifo, Diana ;
Pressman, Max ;
Serebriiskii, Ilya G. ;
Hoffman, John P. ;
Paz, Keren ;
Behrens, Diana ;
Khazak, Vladimir ;
Jablonski, Sandra A. ;
Golemis, Erica A. ;
Weiner, Louis M. ;
Astsaturov, Igor .
CLINICAL CANCER RESEARCH, 2016, 22 (24) :6153-6163
[4]   KRAS: feeding pancreatic cancer proliferation [J].
Bryant, Kirsten L. ;
Mancias, Joseph D. ;
Kimmelman, Alec C. ;
Der, Channing J. .
TRENDS IN BIOCHEMICAL SCIENCES, 2014, 39 (02) :91-100
[5]   The clinical KRAS(G12C) inhibitor AMG 510 drives anti-tumour immunity [J].
Canon, Jude ;
Rex, Karen ;
Saiki, Anne Y. ;
Mohr, Christopher ;
Cooke, Keegan ;
Bagal, Dhanashri ;
Gaida, Kevin ;
Holt, Tyler ;
Knutson, Charles G. ;
Koppada, Neelima ;
Lanman, Brian A. ;
Werner, Jonathan ;
Rapaport, Aaron S. ;
San Miguel, Tisha ;
Ortiz, Roberto ;
Osgood, Tao ;
Sun, Ji-Rong ;
Zhu, Xiaochun ;
McCarter, John D. ;
Volak, Laurie P. ;
Houk, Brett E. ;
Fakih, Marwan G. ;
O'Neil, Bert H. ;
Price, Timothy J. ;
Falchook, Gerald S. ;
Desai, Jayesh ;
Kuo, James ;
Govindan, Ramaswamy ;
Hong, David S. ;
Ouyang, Wenjun ;
Henary, Haby ;
Arvedson, Tara ;
Cee, Victor J. ;
Lipford, J. Russell .
NATURE, 2019, 575 (7781) :217-+
[6]   Systems survey of endocytosis by multiparametric image analysis [J].
Collinet, Claudio ;
Stoeter, Martin ;
Bradshaw, Charles R. ;
Samusik, Nikolay ;
Rink, Jochen C. ;
Kenski, Denise ;
Habermann, Bianca ;
Buchholz, Frank ;
Henschel, Robert ;
Mueller, Matthias S. ;
Nagel, Wolfgang E. ;
Fava, Eugenio ;
Kalaidzidis, Yannis ;
Zerial, Marino .
NATURE, 2010, 464 (7286) :243-U123
[7]   Macropinocytosis of protein is an amino acid supply route in Ras-transformed cells [J].
Commisso, Cosimo ;
Davidson, Shawn M. ;
Soydaner-Azeloglu, Rengin G. ;
Parker, Seth J. ;
Kamphorst, Jurre J. ;
Hackett, Sean ;
Grabocka, Elda ;
Nofal, Michel ;
Drebin, Jeffrey A. ;
Thompson, Craig B. ;
Rabinowitz, Joshua D. ;
Metallo, Christian M. ;
Vander Heiden, Matthew G. ;
Bar-Sagi, Dafna .
NATURE, 2013, 497 (7451) :633-+
[8]   Endocytosis and Intracellular Trafficking as Gateways for Nanomedicine Delivery: Opportunities and Challenges [J].
Duncan, Ruth ;
Richardson, Simon C. W. .
MOLECULAR PHARMACEUTICS, 2012, 9 (09) :2380-2402
[9]   A history of TFIIH: Two decades of molecular biology on a pivotal transcription/repair factor [J].
Egly, Jean-Marc ;
Coin, Frederic .
DNA REPAIR, 2011, 10 (07) :714-721
[10]   The cryo-electron microscopy structure of human transcription factor IIH [J].
Greber, Basil J. ;
Nguyen, Thi Hoang Duong ;
Fang, Jie ;
Afonine, Pavel V. ;
Adams, Paul D. ;
Nogales, Eva .
NATURE, 2017, 549 (7672) :414-+