Clark Richard J, Preza Gloria C, Tan Chia Chia, van Dijk Johannes W A, Fung Eileen, Nemeth Elizabeta, Ganz Tomas, Craik David J
Institute for Molecular Bioscience, The University of Queensland, Institute for Molecular Bioscience, Brisbane QLD, 4072, Australia.
Biopolymers. 2013 Sep;100(5):519-26. doi: 10.1002/bip.22350.
The peptide hormone hepcidin is a key regulator of iron homeostasis in vertebrates. Hepcidin acts by binding to ferroportin, the sole known iron exporter, causing it to be internalized and thus trapping iron within the cell. Dysregulation of hepcidin concentrations is associated with a range of iron-related diseases and hepcidin-based therapeutics could be developed as candidate treatments for these diseases. However peptide-based drugs, despite their many advantages, are often limited by their susceptibility to degradation within the body. Here we describe the design, synthesis and characterization of a series of backbone cyclized hepcidin analogues as an approach to produce stable hepcidin-based leads. The cyclic peptides were shown by NMR to be structurally analogous to native hepcidin. Comparison of the stability of hepcidin with one of the cyclic analogues in human serum revealed that 77% of the cyclic peptide but only 18% of linear hepcidin remained after 24 h. The cyclic peptides were tested for their ability to induce internalization of GFP-ferroportin in vitro but were all found to be inactive. This study demonstrates that backbone cyclization of disulfide-rich peptides is a suitable approach for increasing stability. However, careful consideration of a number of factors, including location of important residues and their bioactive conformation, is required to generate biologically active lead molecules.
肽激素铁调素是脊椎动物铁稳态的关键调节因子。铁调素通过与唯一已知的铁输出蛋白铁转运蛋白结合发挥作用,使其内化,从而将铁困在细胞内。铁调素浓度失调与一系列铁相关疾病有关,基于铁调素的治疗方法可作为这些疾病的候选治疗手段开发。然而,基于肽的药物尽管有许多优点,但往往因其在体内易降解而受到限制。在此,我们描述了一系列主链环化的铁调素类似物的设计、合成和表征,作为产生稳定的基于铁调素的先导化合物的一种方法。核磁共振显示环肽在结构上与天然铁调素类似。将铁调素与其中一种环类似物在人血清中的稳定性进行比较,结果显示24小时后,77%的环肽仍存在,而线性铁调素仅剩下18%。对环肽在体外诱导绿色荧光蛋白 - 铁转运蛋白内化的能力进行了测试,但发现它们均无活性。这项研究表明,富含二硫键的肽进行主链环化是提高稳定性的一种合适方法。然而,要生成具有生物活性的先导分子,需要仔细考虑许多因素,包括重要残基的位置及其生物活性构象。