Department of Molecular Biology and Biophysics, UConn Health, Farmington, Connecticut.
Department of Laboratory Medicine, Yale University, New Haven, Connecticut.
Biophys J. 2022 Apr 5;121(7):1312-1321. doi: 10.1016/j.bpj.2022.02.024. Epub 2022 Feb 19.
Metal binding by members of the growth hormone (GH) family of hematopoietic cytokines has been a subject of considerable interest. However, beyond appreciation of its role in reversible packing of GH proteins in secretory granules, the molecular mechanisms of metal binding and granule formation remain poorly understood. Here, we investigate metal binding by a GH family member prolactin (PRL) using paramagnetic metal titration and chelation experiments. Cu-mediated paramagnetic relaxation enhancement measurements identified two partial metal-binding sites on the opposite faces of PRL composed of residues H30/H180 and E93/H97, respectively. Coordination of metal ions by these two sites causes formation of inter-molecular bridges between the PRL protomers and enables formation of reversible higher aggregates. These findings in vitro suggest a model for reversible packaging of PRL in secretory granules. The proposed mechanism of metal-promoted PRL aggregation lends insight and support to the previously suggested role of metal coordination in secretory granule formation by GH proteins.
金属结合是造血细胞因子生长激素(GH)家族的一个研究热点。然而,除了认识到它在 GH 蛋白在分泌颗粒中的可逆包装中的作用外,金属结合和颗粒形成的分子机制仍知之甚少。在这里,我们使用顺磁金属滴定和螯合实验研究了 GH 家族成员催乳素(PRL)的金属结合。Cu 介导的顺磁弛豫增强测量确定了 PRL 上两个部分金属结合位点,分别由残基 H30/H180 和 E93/H97 组成。这两个位点的金属离子配位导致 PRL 原聚体之间形成分子间桥,并能够形成可逆的更高聚集体。这些体外发现为 PRL 在分泌颗粒中的可逆包装提出了一种模型。所提出的金属促进 PRL 聚集的机制为 GH 蛋白在分泌颗粒形成中金属配位的作用提供了见解和支持。