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PMID: 23596204 Published · ppublish English

A pyrrolo-pyrimidine derivative targets human primary AML stem cells in vivo.

Science translational medicine ·Vol. 5 ·No. 181 ·2013-12-05

Saito Yoriko, Yuki Hitomi, Kuratani Mitsuo, Hashizume Yoshinobu, Takagi Shinsuke, Honma Teruki, Tanaka Akiko, Shirouzu Mikako, Mikuni Junko, Handa Noriko, Ogahara Ikuko, Sone Akiko, Najima Yuho, Tomabechi Yuri, Wakiyama Motoaki, Uchida Naoyuki, Tomizawa-Murasawa Mariko, Kaneko Akiko, Tanaka Satoshi, Suzuki Nahoko, Kajita Hiroshi, Aoki Yuki, Ohara Osamu, Shultz Leonard D, Fukami Takehiro, Goto Toshio, Taniguchi Shuichi, Yokoyama Shigeyuki, Ishikawa Fumihiko

Abstract

Leukemia stem cells (LSCs) that survive conventional chemotherapy are thought to contribute to disease relapse, leading to poor long-term outcomes for patients with acute myeloid leukemia (AML). We previously identified a Src-family kinase (SFK) member, hematopoietic cell kinase (HCK), as a molecular target that is highly differentially expressed in human primary LSCs compared with human normal hematopoietic stem cells (HSCs). We performed a large-scale chemical library screen that integrated a high-throughput enzyme inhibition assay, in silico binding prediction, and crystal structure determination and found a candidate HCK inhibitor, RK-20449, a pyrrolo-pyrimidine derivative with an enzymatic IC50 (half maximal inhibitory concentration) in the subnanomolar range. A crystal structure revealed that RK-20449 bound the activation pocket of HCK. In vivo administration of RK-20449 to nonobese diabetic (NOD)/severe combined immunodeficient (SCID)/IL2rg(null) mice engrafted with highly aggressive therapy-resistant AML significantly reduced human LSC and non-stem AML burden. By eliminating chemotherapy-resistant LSCs, RK-20449 may help to prevent relapse and lead to improved patient outcomes in AML.

Article Info
Journal
Science translational medicine
Abbr.
Sci Transl Med
Published
2013-12-05
Indexed
2013-04-18
Updated
2013-04-18
Language
English
Country/Region
United States
NLM ID
101505086
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