Isobaric Labeling Strategy Utilizing 4-Plex N, N-Dimethyl Leucine (DiLeu) Tags Reveals Proteomic Changes Induced by Chemotherapy in Cerebrospinal Fluid of Children with B-Cell Acute Lymphoblastic Leukemia

利用 4-Plex N, N-二甲基亮氨酸 (DiLeu) 标签的同位素标记策略揭示了 B 细胞急性淋巴细胞白血病患儿脑脊液化疗引起的蛋白质组学变化

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作者:Qinying Yu, Xiaofang Zhong, Bingming Chen, Yu Feng, Min Ma, Carol A Diamond, Julie S Voeller, Miriam Kim, Kenneth B DeSantes, Christian M Capitini, Neha J Patel, Margo L Hoover-Regan, Michael J Burke, Kimberly Janko, Diane M Puccetti, Chrysanthy Ikonomidou, Lingjun Li

Abstract

The use of mass spectrometry for protein identification and quantification in cerebrospinal fluid (CSF) is at the forefront of research efforts to identify and explore biomarkers for the early diagnosis and prognosis of neurologic disorders. Here we implemented a 4-plex N,N-dimethyl leucine (DiLeu) isobaric labeling strategy in a longitudinal study aiming to investigate protein dynamics in children with B-cell acute lymphoblastic leukemia (B-cell ALL) undergoing chemotherapy. The temporal profile of CSF proteome during chemotherapy treatment at weeks 5, 10-14, and 24-28 highlighted many differentially expressed proteins, such as neural cell adhesion molecule, neuronal growth regulator 1, and secretogranin-3, all of which play important roles in neurodegenerative diseases. A total of 63 proteins were significantly altered across all of the time points investigated. The most over-represented biological processes from gene ontology analysis included platelet degranulation, complement activation, cell adhesion, fibrinolysis, neuron projection, regeneration, and regulation of neuron death. We expect that results from this and future studies will provide a means to monitor neurotoxicity and develop strategies to prevent central nervous system injury in response to chemotherapy in children.

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