首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Ternary Complex of Transforming Growth Factor-β1 Reveals Isoform-specific Ligand Recognition and Receptor Recruitment in the Superfamily
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Ternary Complex of Transforming Growth Factor-β1 Reveals Isoform-specific Ligand Recognition and Receptor Recruitment in the Superfamily

机译:转化生长因子-β1三元复合物揭示超家族中的同工型特异性配体识别和受体招募。

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摘要

Transforming growth factor (TGF)-β1, -β2, and -β3 are 25-kDa homodimeric polypeptides that play crucial nonoverlapping roles in embryogenesis, tissue development, carcinogenesis, and immune regulation. Here we report the 3.0-Å resolution crystal structure of the ternary complex between human TGF-β1 and the extracellular domains of its type I and type II receptors, TβRI and TβRII. The TGF-β1 ternary complex structure is similar to previously reported TGF-β3 complex except with a 10° rotation in TβRI docking orientation. Quantitative binding studies showed distinct kinetics between the receptors and the isoforms of TGF-β. TβRI showed significant binding to TGF-β2 and TGF-β3 but not TGF-β1, and the binding to all three isoforms of TGF-β was enhanced considerably in the presence of TβRII. The preference of TGF-β2 to TβRI suggests a variation in its receptor recruitment in vivo. Although TGF-β1 and TGF-β3 bind and assemble their ternary complexes in a similar manner, their structural differences together with differences in the affinities and kinetics of their receptor binding may underlie their unique biological activities. Structural comparisons revealed that the receptor-ligand pairing in the TGF-β superfamily is dictated by unique insertions, deletions, and disulfide bonds rather than amino acid conservation at the interface. The binding mode of TβRII on TGF-β is unique to TGF-βs, whereas that of type II receptor for bone morphogenetic protein on bone morphogenetic protein appears common to all other cytokines in the superfamily. Further, extensive hydrogen bonds and salt bridges are present at the high affinity cytokine-receptor interfaces, whereas hydrophobic interactions dominate the low affinity receptor-ligand interfaces.
机译:转化生长因子(TGF)-β1,-β2和-β3是25-kDa同源二聚体多肽,在胚胎发生,组织发育,致癌作用和免疫调节中起着至关重要的非重叠作用。在这里,我们报告了人类TGF-β1及其I型和II型受体TβRI和TβRII的胞外域之间的三元复合物的3.0-Å分辨率晶体结构。 TGF-β1三元复合物的结构与先前报道的TGF-β3复合物相似,只是在TβRI对接方向上旋转了10°。定量结合研究显示了受体和TGF-β亚型之间的独特动力学。 TβRI显示出与TGF-β2和TGF-β3的显着结合,但不与TGF-β1结合,并且在存在TβRII的情况下,与TGF-β的所有三种同工型的结合显着增强。 TGF-β2对TβRI的偏爱提示其体内受体募集有所不同。尽管TGF-β1和TGF-β3以相似的方式结合和组装其三元复合物,但它们的结构差异以及受体结合的亲和力和动力学差异可能是它们独特的生物学活性的基础。结构比较显示,TGF-β超家族中的受体-配体配对是由独特的插入,缺失和二硫键决定的,而不是由界面处的氨基酸保守决定的。 TGF-βs上TβRII的结合模式是TGF-β所特有的,而骨形态发生蛋白上的骨形态发生蛋白的II型受体的结合模式似乎是超家族中所有其他细胞因子共有的。此外,在高亲和力的细胞因子-受体界面处存在广泛的氢键和盐桥,而疏水性相互作用主导着低亲和力的受体-配体界面。

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