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SH2 结构域内含肌醇 5-磷酸酶通过促进能量代谢支持伯基特淋巴瘤细胞的存活。

SH2 domain-containing inositol 5-phosphatases support the survival of Burkitt lymphoma cells by promoting energy metabolism.

机构信息

Institute for Cellular and Molecular Immunology, University Medical Center Göttingen.

Institute for Biochemistry I, Faculty of Medicine, Johann Wolfgang Goethe-University Frankfurt.

出版信息

Haematologica. 2024 May 1;109(5):1445-1459. doi: 10.3324/haematol.2023.283663.

Abstract

Burkitt lymphoma cells (BL) exploit antigen-independent tonic signals transduced by the B-cell antigen receptor (BCR) for their survival, but the molecular details of the rewired BL-specific BCR signal network remain unclear. A loss of function screen revealed the SH2 domain-containing 5`-inositol phosphatase 2 (SHIP2) as a potential modulator of BL fitness. We characterized the role of SHIP2 in BL survival in several BL cell models and show that perturbing SHIP2 function renders cells more susceptible to apoptosis, while attenuating proliferation in a BCR-dependent manner. Unexpectedly, SHIP2 deficiency did neither affect PI3K survival signals nor MAPK activity, but attenuated ATP production. We found that an efficient energy metabolism in BL cells requires phosphatidylinositol-3,4-bisphosphate (PI(3,4)P2), which is the enzymatic product of SHIP proteins. Consistently, interference with the function of SHIP1 and SHIP2 augments BL cell susceptibility to PI3K inhibition. Notably, we provide here a molecular basis of how tonic BCR signals are connected to energy supply, which is particularly important for such an aggressively growing neoplasia. These findings may help to improve therapies for the treatment of BL by limiting energy metabolism through the inhibition of SHIP proteins, which renders BL cells more susceptible to the targeting of survival signals.

摘要

伯基特淋巴瘤细胞 (BL) 通过 B 细胞抗原受体 (BCR) 转导抗原非依赖性紧张信号来维持其生存,但重新布线的 BL 特异性 BCR 信号网络的分子细节仍不清楚。功能丧失筛选揭示了含 SH2 结构域的 5`-肌醇磷酸酶 2 (SHIP2) 是 BL 适应性的潜在调节剂。我们在几种 BL 细胞模型中表征了 SHIP2 在 BL 存活中的作用,并表明干扰 SHIP2 功能会使细胞更容易凋亡,同时以 BCR 依赖性方式减弱增殖。出乎意料的是,SHIP2 缺陷既不影响 PI3K 存活信号也不影响 MAPK 活性,但会减弱 ATP 产生。我们发现 BL 细胞中有效的能量代谢需要磷脂酰肌醇-3,4-二磷酸 (PI(3,4)P2),这是 SHIP 蛋白的酶产物。一致地,干扰 SHIP1 和 SHIP2 的功能会增加 BL 细胞对 PI3K 抑制的敏感性。值得注意的是,我们在这里提供了紧张 BCR 信号如何与能量供应相关联的分子基础,这对于这种侵袭性生长的肿瘤尤其重要。这些发现可能有助于通过抑制 SHIP 蛋白限制能量代谢来改善 BL 的治疗方法,这会使 BL 细胞更容易受到存活信号靶向的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2db1/11063853/f7914f229556/1091445.fig1.jpg

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