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Site-specific conjugation of a lanthanide chelator and its effects on the chemical synthesis and receptor binding affinity of human relaxin-2 hormone

机译:镧系元素螯合剂的位点特异性缀合及其对人松弛素2激素的化学合成和受体结合亲和力的影响

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摘要

Diethylenetriamine pentaacetic acid (DTPA) is a popular chelator agent for enabling the labeling of peptides for their use in structure-activity relationship study and biodistribution analysis. Solid phase peptide synthesis was employed to couple this commercially available chelator at the N-terminus of either the A-chain or B-chain of H2 relaxin. The coupling of the DTPA chelator at the N-terminus of the B-chain and subsequent loading of a lanthanide (europium) ion into the chelator led to a labeled peptide (Eu-DTPA-(B)-H2) in low yield and having very poor water solubility. On the other hand, coupling of the DTPA and loading of Eu at the N-terminus of the A-chain led to a water-soluble peptide (Eu-DTPA-(A)-H2) with a significantly improved final yield. The conjugation of the DTPA chelator at the N-terminus of the A-chain did not have any impact on the secondary structure of the peptide determined by circular dichroism spectroscopy (CD). On the other hand, it was not possible to determine the secondary structure of Eu-DTPA-(B)-H2 because of its insolubility in phosphate buffer. The B-chain labeled peptide Eu-DTPA-(B)-H2 required solubilization in DMSO prior to carrying out binding assays, and showed lower affinity for binding to H2 relaxin receptor, RXFP1, compared to the water-soluble A-chain labeled peptide Eu-DTPA-(A)-H2. The mono-Eu-DTPA labeled A-chain peptide, Eu-DTPA-(A)-H2, thus can be used as a valuable probe to study ligand-receptor interactions of therapeutically important H2 relaxin analogs. Our results show that it is critical to choose an approriate site for incorporating chelators such as DTPA. Otherwise, the bulky size of the chelator, depending on the site of incorporation, can affect yield, solubility, structure and pharmacological profile of the peptide.
机译:二亚乙基三胺五乙酸(DTPA)是一种流行的螯合剂,可标记肽以用于结构-活性关系研究和生物分布分析。固相肽合成被用来在H2松弛素的A链或B链的N-末端偶联这种可商购的螯合剂。 DTPA螯合剂在B链N端的偶联以及随后将镧系元素(eur)离子加载到螯合剂中导致标记的肽(Eu-DTPA-(B)-H2)低产量且具有水溶性很差。另一方面,DTPA的偶联和Eu在A链N端的负载导致水溶性肽(Eu-DTPA-(A)-H2)的最终收率显着提高。 DTPA螯合剂在A链N端的缀合对通过圆二色光谱(CD)测定的肽的二级结构没有任何影响。另一方面,由于Eu-DTPA-(B)-H2不溶于磷酸盐缓冲液,因此无法确定其二级结构。 B链标记的肽Eu-DTPA-(B)-H2在进行结合测定之前需要在DMSO中溶解,并且与水溶性A链标记的肽相比,与H2松弛素受体RXFP1的结合亲和力较低Eu-DTPA-(A)-H2。因此,单-Eu-DTPA标记的A链肽Eu-DTPA-(A)-H2可用作研究治疗上重要的H2松弛素类似物的配体-受体相互作用的有价值的探针。我们的结果表明,选择合适的地点并入螯合剂(例如DTPA)至关重要。否则,螯合剂的庞大尺寸,取决于掺入的位置,会影响肽的产量,溶解性,结构和药理学特征。

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