Mukherjee Kankana, Chava Anil K, Bandyopadhyay Suman, Mallick Asish, Chandra Sarmila, Mandal Chitra
Infectious Diseases and Immunology Division, Indian Institute of Chemical Biology, 4, Raja S.C. Mullick Road, Kolkata 700032, India.
Biol Chem. 2009 Apr;390(4):325-35. doi: 10.1515/BC.2009.036.
Enhanced levels of 9-O-acetylated sialoglycoproteins (Neu5,9Ac(2)GPs) as disease-associated molecules was reported to act as signaling molecules for promoting survival of lymphoblasts in childhood acute lymphoblastic leukemia (ALL). Here, we searched for potential physiological ligands for Neu5,9Ac(2)GPs that could be involved in modulating the survival of lymphoblasts. Accordingly, we examined the presence of binding proteins for Neu5,9Ac(2)GPs on cell lines and primary cells of patients with B- and T-ALL, at presentation of the disease. Peripheral blood mononuclear cells from normal healthy donors and cells from myeloid leukemia patients were used for comparison. Neu5,9Ac(2)GPs-binding proteins (BPs) were specifically detected on the surface of both T- and B-ALL-lymphoblasts and ALL-cell lines along with the consistent presence of Neu5,9Ac(2)GPs. The Neu5,9Ac(2)GPs and BPs also co-localized on the cell surface and interacted specifically in vitro. Apoptosis of lymphoblasts, induced by serum starvation, was reversed in the presence of purified Neu5,9Ac(2)GPs due to possible engagement of BPs, and the anti-apoptotic role of this interaction was established. This is the first report of the presence of potential physiological ligands for disease-associated molecules like Neu5,9Ac(2)GPs, the interaction of which is able to trigger an anti-apoptotic signal conferring a survival advantage to leukemic cells in childhood ALL.
据报道,作为疾病相关分子的9-O-乙酰化唾液酸糖蛋白(Neu5,9Ac(2)GPs)水平升高,可作为促进儿童急性淋巴细胞白血病(ALL)中淋巴母细胞存活的信号分子。在此,我们寻找可能参与调节淋巴母细胞存活的Neu5,9Ac(2)GPs潜在生理配体。因此,我们在疾病初发时检查了B-ALL和T-ALL患者的细胞系及原代细胞上Neu5,9Ac(2)GPs结合蛋白的存在情况。使用正常健康供者的外周血单核细胞和髓系白血病患者的细胞作为对照。在T-ALL和B-ALL淋巴母细胞以及ALL细胞系表面特异性检测到Neu5,9Ac(2)GPs结合蛋白(BPs),同时Neu5,9Ac(2)GPs也持续存在。Neu5,9Ac(2)GPs和BPs也在细胞表面共定位,并在体外特异性相互作用。由于可能存在BPs,在纯化的Neu5,9Ac(2)GPs存在下,血清饥饿诱导的淋巴母细胞凋亡得以逆转,并且确定了这种相互作用的抗凋亡作用。这是首次报道存在像Neu5,9Ac(2)GPs这样的疾病相关分子的潜在生理配体,其相互作用能够触发抗凋亡信号,赋予儿童ALL白血病细胞生存优势。