首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Link Protein N-terminal Peptide Binds to Bone Morphogenetic Protein (BMP) Type II Receptor and Drives Matrix Protein Expression in Rabbit Intervertebral Disc Cells
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Link Protein N-terminal Peptide Binds to Bone Morphogenetic Protein (BMP) Type II Receptor and Drives Matrix Protein Expression in Rabbit Intervertebral Disc Cells

机译:链接蛋白N端肽与II型骨形态发生蛋白(BMP)受体结合并驱动兔椎间盘细胞中基质蛋白的表达

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摘要

Intervertebral disc (IVD) degeneration and associated spinal disorders are leading sources of morbidity, and they can be responsible for chronic low back pain. Treatments for degenerative disc diseases continue to be a challenge. Intensive research is now focusing on promoting regeneration of degenerated discs by stimulating production of the disc matrix. Link protein N-terminal peptide (LPP) is a proteolytic fragment of link protein, an important cross-linker and stabilizer of the major structural components of cartilage, aggrecan and hyaluronan. In this study we investigated LPP action in rabbit primary intervertebral disc cells cultured ex vivo in a three-dimensional alginate matrix. Our data reveal that LPP promotes disc matrix production, which was evidenced by increased expression of the chondrocyte-specific transcription factor SOX9 and the extracellular matrix macromolecules aggrecan and collagen II. Using colocalization and pulldown studies we further document a noggin-insensitive direct peptide-protein association between LPP and BMP-RII. This association mediated Smad signaling that converges on BMP genes leading to expression of BMP-4 and BMP-7. Furthermore, through a cell-autonomous loop BMP-4 and BMP-7 intensified Smad1/5 signaling though a feedforward circuit involving BMP-RI, ultimately promoting expression of SOX9 and downstream aggrecan and collagen II genes. Our data define a complex regulatory signaling cascade initiated by LPP and suggest that LPP may be a useful therapeutic substitute for direct BMP administration to treat IVD degeneration and to ameliorate IVD-associated chronic low back pain.
机译:椎间盘(IVD)变性和相关的脊柱疾病是发病的主要来源,它们可能导致慢性下腰痛。椎间盘退行性疾病的治疗仍然是一个挑战。现在,集中的研究集中在通过刺激椎间盘基质的产生来促进变性椎间盘的再生。链接蛋白N末端肽(LPP)是链接蛋白的蛋白水解片段,是软骨,蛋白聚糖和透明质酸的主要结构成分的重要交联剂和稳定剂。在这项研究中,我们调查了在三维藻酸盐基质中离体培养的兔原发性椎间盘细胞中LPP的作用。我们的数据显示LPP促进了椎间盘基质的产生,这可以通过软骨细胞特异性转录因子SOX9和细胞外基质聚集蛋白聚糖和胶原II的表达增加来证明。使用共定位和下拉研究,我们进一步证明了LPP和BMP-RII之间的Noggin不敏感的直接肽-蛋白质缔合。这种联系介导的Smad信号转导于BMP基因上,导致BMP-4和BMP-7的表达。此外,通过细胞自主环BMP-4和BMP-7通过涉及BMP-RI的前馈回路增强了Smad1 / 5信号传导,最终促进了SOX9和下游蛋白聚糖和胶原II基因的表达。我们的数据定义了由LPP引发的复杂的调控信号传导级联,提示LPP可能是直接BMP给药的有用治疗替代品,以治疗IVD变性和缓解IVD相关的慢性下腰痛。

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