Zhang Dongyun, Babayan Lilit, Ho Hillary, Heaney Anthony P
Department of Medicine, David Geffen School of Medicine, University of California, Los Angeles 90095, USA.
Department of Medicine, David Geffen School of Medicine, University of California, Los Angeles 90095, USA
Biol Open. 2019 Mar 4;8(3):bio036566. doi: 10.1242/bio.036566.
Neuroblastoma is a commonly encountered solid tumor in early childhood with high neuroplasticity, and differentiation therapy is hypothesized to lead to tumor mass shrinkage and/or symptom relief. CgA is a tissue specific protein restricted to the diffuse neuroendocrine system, and widely expressed in neuroblastomas. Using knockdown and knockout approaches to deplete CgA levels, we demonstrated that CgA loss inhibits SH-SY5Y cell proliferation and leads to a morphological shift with increased expression of Schwann and extracellular matrix specific molecules, and suppression of chromaffin features. We further confirmed the effects of CgA in a series of neuroblastoma cells with [BE(2)-M17 and IMR-32] and without (SK-N-SH) N-Myc amplification. We demonstrated that CgA depletion reduced IGF-II and IGFBP-2 expression, increased IGFBP-3 levels, and suppresses IGF downstream signaling as evidenced by reduced AKT/ERK pathway activation. This was further supported by an increased anti-proliferative effect of the ERK inhibitor in the CgA depleted cells. In an xenograft neuroblastoma model, CgA knockdown led to increased S-phenotypic marker expression at both protein and mRNA levels. Together these results suggest that CgA maintains IGF secretion and intracellular signaling to regulate proliferation and differentiation in neuroblastomas.
神经母细胞瘤是儿童早期常见的实体瘤,具有高度神经可塑性,分化疗法被认为可导致肿瘤体积缩小和/或症状缓解。嗜铬粒蛋白A(CgA)是一种局限于弥散神经内分泌系统的组织特异性蛋白,在神经母细胞瘤中广泛表达。通过敲低和敲除方法降低CgA水平,我们证明CgA缺失会抑制SH-SY5Y细胞增殖,并导致形态学转变,伴有雪旺细胞和细胞外基质特异性分子表达增加,以及嗜铬细胞特征的抑制。我们进一步在一系列有[BE(2)-M17和IMR-32]和无(SK-N-SH)N-Myc扩增的神经母细胞瘤细胞中证实了CgA的作用。我们证明CgA缺失会降低IGF-II和IGFBP-2表达,增加IGFBP-3水平,并抑制IGF下游信号传导,AKT/ERK途径激活减少证明了这一点。ERK抑制剂在CgA缺失细胞中抗增殖作用增强进一步支持了这一点。在异种移植神经母细胞瘤模型中,CgA敲低导致S表型标志物在蛋白质和mRNA水平上的表达增加。这些结果共同表明,CgA维持IGF分泌和细胞内信号传导,以调节神经母细胞瘤的增殖和分化。