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BMP2/GDF5 和 BMP4/GDF5 异二聚体的形成与表征。

Formation and characterization of BMP2/GDF5 and BMP4/GDF5 heterodimers.

机构信息

Department of Molecular & Cellular Biosciences, University of Cincinnati College of Medicine, Cincinnati, OH, USA.

Department of Biochemistry and Molecular Biophysics, University of Chicago, Chicago, IL, USA.

出版信息

BMC Biol. 2023 Feb 1;21(1):16. doi: 10.1186/s12915-023-01522-4.

Abstract

BACKGROUND

Proteins of the TGFβ family, which are largely studied as homodimers, are also known to form heterodimers with biological activity distinct from their component homodimers. For instance, heterodimers of bone morphogenetic proteins, including BMP2/BMP7, BMP2/BMP6, and BMP9/BMP10, among others, have illustrated the importance of these heterodimeric proteins within the context of TGFβ signaling.

RESULTS

In this study, we have determined that mature GDF5 can be combined with mature BMP2 or BMP4 to form BMP2/GDF5 and BMP4/GDF5 heterodimer. Intriguingly, this combination of a BMP2 or BMP4 monomer, which exhibit high affinity to heparan sulfate characteristic to the BMP class, with a GDF5 monomer with low heparan sulfate affinity produces a heterodimer with an intermediate affinity. Using heparin affinity chromatography to purify the heterodimeric proteins, we then determined that both the BMP2/GDF5 and BMP4/GDF5 heterodimers consistently signaled potently across an array of cellular and in vivo systems, while the activities of their homodimeric counterparts were more context dependent. These differences were likely driven by an increase in the combined affinities for the type 1 receptors, Alk3 and Alk6. Furthermore, the X-ray crystal structure of BMP2/GDF5 heterodimer was determined, highlighting the formation of two asymmetric type 1 receptor binding sites that are both unique relative to the homodimers.

CONCLUSIONS

Ultimately, this method of heterodimer production yielded a signaling molecule with unique properties relative to the homodimeric ligands, including high affinity to multiple type 1 and moderate heparan binding affinity.

摘要

背景

TGFβ 家族的蛋白主要作为同源二聚体进行研究,也已知其与具有独特生物活性的异源二聚体形成。例如,骨形态发生蛋白(BMP)的异源二聚体,包括 BMP2/BMP7、BMP2/BMP6 和 BMP9/BMP10 等,已经表明这些异源二聚体蛋白在 TGFβ 信号转导中的重要性。

结果

在这项研究中,我们已经确定成熟的 GDF5 可以与成熟的 BMP2 或 BMP4 结合形成 BMP2/GDF5 和 BMP4/GDF5 异源二聚体。有趣的是,这种 BMP2 或 BMP4 单体与肝素硫酸酯的高亲和力的结合,与 GDF5 单体的低肝素硫酸酯亲和力相结合,产生了一种具有中间亲和力的异源二聚体。使用肝素亲和层析法纯化异源二聚体蛋白,然后我们确定 BMP2/GDF5 和 BMP4/GDF5 异源二聚体在一系列细胞和体内系统中都能有效地发出信号,而它们同源二聚体的活性则更依赖于背景。这些差异可能是由于 1 型受体 Alk3 和 Alk6 的结合亲和力增加所致。此外,还确定了 BMP2/GDF5 异源二聚体的 X 射线晶体结构,突出了形成两个不对称 1 型受体结合位点的情况,这两个结合位点相对于同源二聚体都是独特的。

结论

最终,这种异源二聚体的产生方法产生了一种具有独特性质的信号分子,相对于同源二聚体配体具有高亲和力和中等肝素结合亲和力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ed1/9893541/b8d725905dcb/12915_2023_1522_Fig1_HTML.jpg

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