首页> 美国卫生研究院文献>The Journal of Biological Chemistry >An engineered transforming growth factor β (TGF-β) monomer that functions as a dominant negative to block TGF-β signaling
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An engineered transforming growth factor β (TGF-β) monomer that functions as a dominant negative to block TGF-β signaling

机译:工程化的转化生长因子β(TGF-β)单体可作为主要的负离子来阻断TGF-β信号传导

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摘要

The transforming growth factor β isoforms, TGF-β1, -β2, and -β3, are small secreted homodimeric signaling proteins with essential roles in regulating the adaptive immune system and maintaining the extracellular matrix. However, dysregulation of the TGF-β pathway is responsible for promoting the progression of several human diseases, including cancer and fibrosis. Despite the known importance of TGF-βs in promoting disease progression, no inhibitors have been approved for use in humans. Herein, we describe an engineered TGF-β monomer, lacking the heel helix, a structural motif essential for binding the TGF-β type I receptor (TβRI) but dispensable for binding the other receptor required for TGF-β signaling, the TGF-β type II receptor (TβRII), as an alternative therapeutic modality for blocking TGF-β signaling in humans. As shown through binding studies and crystallography, the engineered monomer retained the same overall structure of native TGF-β monomers and bound TβRII in an identical manner. Cell-based luciferase assays showed that the engineered monomer functioned as a dominant negative to inhibit TGF-β signaling with a Ki of 20–70 nm. Investigation of the mechanism showed that the high affinity of the engineered monomer for TβRII, coupled with its reduced ability to non-covalently dimerize and its inability to bind and recruit TβRI, enabled it to bind endogenous TβRII but prevented it from binding and recruiting TβRI to form a signaling complex. Such engineered monomers provide a new avenue to probe and manipulate TGF-β signaling and may inform similar modifications of other TGF-β family members.
机译:转化生长因子β同工型,TGF-β1,-β2和-β3,是少量分泌的同二聚体信号蛋白,在调节适应性免疫系统和维持细胞外基质中起着重要作用。但是,TGF-β途径的失调是促进多种人类疾病(包括癌症和纤维化)发展的原因。尽管已知TGF-β在促进疾病进展中具有重要意义,但尚未批准将抑制剂用于人类。在这里,我们描述了一种工程化的TGF-β单体,它没有脚跟螺旋,这是结合TGF-βI型受体(TβRI)所必需的结构基序,但对于结合TGF-β信号传导所需的其他受体TGF-β却是必不可少的II型受体(TβRII),作为阻断人类TGF-β信号传导的替代治疗方式。如通过结合研究和晶体学所显示的,工程单体保留了天然TGF-β单体的相同整体结构,并以相同方式结合了TβRII。基于细胞的荧光素酶测定表明,工程改造的单体起着显性负离子的作用,以20-70 nm的Ki抑制TGF-β信号传导。机制的研究表明,工程单体对TβRII的高亲和力,加上其非共价二聚体的能力降低,并且无法结合和募集TβRI,使其能够结合内源性TβRII,但阻止了其与TβRII的结合和募集。形成信号复合体。这样的工程单体提供了探测和操纵TGF-β信号传导的新途径,并且可以告知其他TGF-β家族成员的类似修饰。

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