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PMID: 26438511 已发表 · ppublish 英语

Profiling of somatic mutations in acute myeloid leukemia with FLT3-ITD at diagnosis and relapse.

Blood ·第 126 卷 ·第 22 期 ·2016-03-18

Garg Manoj, Nagata Yasunobu, Kanojia Deepika, Mayakonda Anand, Yoshida Kenichi, Haridas Keloth Sreya, Zang Zhi Jiang, Okuno Yusuke, Shiraishi Yuichi, Chiba Kenichi, Tanaka Hiroko, Miyano Satoru, Ding Ling-Wen, Alpermann Tamara, Sun Qiao-Yang, Lin De-Chen, Chien Wenwen, Madan Vikas, Liu Li-Zhen, Tan Kar-Tong, Sampath Abhishek, Venkatesan Subhashree, Inokuchi Koiti, Wakita Satoshi, Yamaguchi Hiroki, Chng Wee Joo, Kham Shirley-Kow Yin, Yeoh Allen Eng-Juh, Sanada Masashi, Schiller Joanna, Kreuzer Karl-Anton, Kornblau Steven M, Kantarjian Hagop M, Haferlach Torsten, Lill Michael, Kuo Ming-Chung, Shih Lee-Yung, Blau Igor-Wolfgang, Blau Olga, Yang Henry, Ogawa Seishi, Koeffler H Phillip

摘要

Acute myeloid leukemia (AML) with an FLT3 internal tandem duplication (FLT3-ITD) mutation is an aggressive hematologic malignancy with a grave prognosis. To identify the mutational spectrum associated with relapse, whole-exome sequencing was performed on 13 matched diagnosis, relapse, and remission trios followed by targeted sequencing of 299 genes in 67 FLT3-ITD patients. The FLT3-ITD genome has an average of 13 mutations per sample, similar to other AML subtypes, which is a low mutation rate compared with that in solid tumors. Recurrent mutations occur in genes related to DNA methylation, chromatin, histone methylation, myeloid transcription factors, signaling, adhesion, cohesin complex, and the spliceosome. Their pattern of mutual exclusivity and cooperation among mutated genes suggests that these genes have a strong biological relationship. In addition, we identified mutations in previously unappreciated genes such as MLL3, NSD1, FAT1, FAT4, and IDH3B. Mutations in 9 genes were observed in the relapse-specific phase. DNMT3A mutations are the most stable mutations, and this DNMT3A-transformed clone can be present even in morphologic complete remissions. Of note, all AML matched trio samples shared at least 1 genomic alteration at diagnosis and relapse, suggesting common ancestral clones. Two types of clonal evolution occur at relapse: either the founder clone recurs or a subclone of the founder clone escapes from induction chemotherapy and expands at relapse by acquiring new mutations. Relapse-specific mutations displayed an increase in transversions. Functional assays demonstrated that both MLL3 and FAT1 exert tumor-suppressor activity in the FLT3-ITD subtype. An inhibitor of XPO1 synergized with standard AML induction chemotherapy to inhibit FLT3-ITD growth. This study clearly shows that FLT3-ITD AML requires additional driver genetic alterations in addition to FLT3-ITD alone.

文献信息
期刊
Blood
期刊简称
Blood
发表日期
2016-03-18
收录日期
2015-11-27
更新日期
2016-11-26
语言
英语
国家/地区
United States
NLM ID
7603509
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