Department of Pediatrics, University of Colorado Anschutz Medical Campus, Aurora, Colorado, United States of America.
PLoS One. 2012;7(2):e31635. doi: 10.1371/journal.pone.0031635. Epub 2012 Feb 20.
Mer tyrosine kinase is ectopically expressed in acute lymphoblastic leukemia and associated with enhanced chemoresistance and disease progression. While such effects are generally ascribed to increased engagement of oncogenic pathways downstream of Mer stimulation by its ligand, Gas6, Mer has not been characterized beyond the scope of its signaling activity. The present study explores Mer behavior following prolonged exposure to Gas6, a context similar to the Gas6-enriched microenvironment of the bone marrow, where a steady supply of ligand facilitates continuous engagement of Mer and likely sustains the presence of leukemic cells. Long-term Gas6 exposure induced production of a partially N-glycosylated form of Mer from newly synthesized stores of protein. Preferential expression of the partial Mer glycoform was associated with diminished levels of Mer on the cell surface and altered Mer localization within the nuclear-soluble and chromatin-bound fractions. The presence of Mer in the nucleus is a novel finding for this receptor, and the glycoform-specific preferences observed in each nuclear compartment suggest that glycosylation may influence Mer function within particular subcellular locales. Previous studies have established Mer as an attractive cancer biologic target, and understanding the complexity of its activity has important implications for potential strategies of Mer inhibition in leukemia therapy. Our results identify several novel features of Mer that expand the breadth of its functions and impact the development of therapeutic modalities designed to target Mer.
人 Mer 酪氨酸激酶在急性淋巴细胞白血病中异位表达,并与增强的化疗耐药性和疾病进展相关。虽然这些影响通常归因于 Mer 与其配体 Gas6 刺激下游致癌途径的增加参与,但 Mer 的行为特征超出了其信号转导活性的范围。本研究探讨了 Mer 在 Gas6 长期暴露后的行为,这是类似于骨髓中富含 Gas6 的微环境的情况,其中配体的稳定供应促进了 Mer 的持续参与,并可能维持白血病细胞的存在。长期 Gas6 暴露诱导了从新合成的蛋白质储存中产生部分 N-糖基化形式的 Mer。部分 Mer 糖型的优先表达与细胞表面 Mer 水平降低以及核可溶和染色质结合部分中 Mer 定位改变有关。该受体在核内的存在是一个新发现,在每个核区室中观察到的糖型特异性偏好表明糖基化可能影响特定亚细胞位置的 Mer 功能。先前的研究已经确立了 Mer 作为有吸引力的癌症生物学靶标,并且理解其活性的复杂性对于在白血病治疗中 Mer 抑制的潜在策略具有重要意义。我们的研究结果确定了 Mer 的几个新特征,这些特征扩展了其功能的范围,并影响了旨在靶向 Mer 的治疗模式的发展。