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DLL4 调节 NOTCH 信号通路并促进 NOD/SCID 小鼠 T 急性淋巴细胞白血病细胞的生长。

DLL4 regulates NOTCH signaling and growth of T acute lymphoblastic leukemia cells in NOD/SCID mice.

机构信息

Immunology and Oncology Section, Department of Surgery Oncology and Gastroenterology, University of Padova, 35100 Padova, Italy.

Immunology and Molecular Oncology Unit, Istituto Oncologico Veneto-IRCCS, 35100 Padova, Italy, Present addresses: Klinische Chemie und Laboratoriumsmedizin, Universitätsklinikum des Saarlandes, Homburg/Saar, Germany.

出版信息

Carcinogenesis. 2015 Jan;36(1):115-21. doi: 10.1093/carcin/bgu223. Epub 2014 Oct 29.

Abstract

Activation of the NOTCH pathway occurs commonly in T acute lymphoblastic leukemia (T-ALL) mainly due to mutations in NOTCH1 or alterations in FBW7 and is involved in the regulation of cell proliferation and survival. Since mutations hit different domains of the receptor, they are predicted to heterogeneously perturb ligand-induced NOTCH1 activity. Moreover, T-ALL cells also co-express NOTCH3 receptors which could be triggered by different ligands. In this study, we aimed to investigate the role of DLL4 in the regulation of NOTCH signaling in T-ALL cells in the context of different types of NOTCH1 mutation or wild-type NOTCH receptor, as well as the effects of DLL4 neutralization on T-ALL engraftment in mice. We found that NOTCH signaling can be stimulated in T-ALL cells in vitro by either human or murine DLL4 with heterogeneous effects, according to NOTCH1/FBW7 mutation status, and that these effects can be blocked by antibodies neutralizing DLL4, NOTCH1 or NOTCH2/3. In vivo, DLL4 is expressed in the spleen and the bone marrow (BM) of NOD/SCID mice bearing T-ALL xenografts as well as the BM of T-ALL patients. Importantly, DLL4 blockade impaired growth of T-ALL cells in NOD/SCID mice and increased leukemia cell apoptosis. These results show that DLL4 is an important component of the tumor microenvironment which contributes to the early steps of T-ALL cell growth.

摘要

NOTCH 通路的激活在 T 急性淋巴细胞白血病(T-ALL)中很常见,主要是由于 NOTCH1 突变或 FBW7 改变,并且参与细胞增殖和存活的调节。由于突变击中受体的不同结构域,它们预计会异质地干扰配体诱导的 NOTCH1 活性。此外,T-ALL 细胞还共同表达 NOTCH3 受体,这些受体可被不同的配体触发。在这项研究中,我们旨在研究 DLL4 在不同类型的 NOTCH1 突变或野生型 NOTCH 受体背景下调节 T-ALL 细胞中 NOTCH 信号的作用,以及 DLL4 中和对 T-ALL 在小鼠中的植入的影响。我们发现,NOTCH 信号可以在体外通过人或鼠 DLL4 刺激 T-ALL 细胞,根据 NOTCH1/FBW7 突变状态,具有异质效应,并且这些效应可以通过中和 DLL4、NOTCH1 或 NOTCH2/3 的抗体阻断。在体内,DLL4 在携带 T-ALL 异种移植物的 NOD/SCID 小鼠的脾脏和骨髓(BM)以及 T-ALL 患者的 BM 中表达。重要的是,DLL4 阻断会损害 NOD/SCID 小鼠中 T-ALL 细胞的生长,并增加白血病细胞凋亡。这些结果表明 DLL4 是肿瘤微环境的重要组成部分,有助于 T-ALL 细胞生长的早期步骤。

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