CNRS, Institut de Chimie des Substances Naturelles, Université Paris-Saclay, 91190 Gif-sur-Yvette, France.
Laboratoire de Chimie Moléculaire (LCM), CNRS, École Polytechnique, Institut Polytechnique de Paris, 91120 Palaiseau, France.
Mar Drugs. 2024 Apr 25;22(5):196. doi: 10.3390/md22050196.
As a result of screening a panel of marine organisms to identify lead molecules for the stimulation of endochondral bone formation, the calcareous sponge was identified to exhibit significant activity during endochondral differentiation. On further molecular networking analysis, dereplication and chemical fractionation yielded the known clathridine A-related metabolites and the homodimeric complex (clathridine A) Zn (), together with the new unstable heterodimeric complex (clathridine A-clathridimine)Zn (). With the presence of the zinc complexes annotated through the LC-MS analysis of the crude extract changing due to the instability of some metabolites and complexes constituting the mixture, we combined the isolation of the predicted molecules with their synthesis in order to confirm their structure and to understand their reactivity. Interestingly, we also found a large quantity of the contaminant benzotriazoles BTZ () and its semi-dimer (BTZ)CH (), which are known to form complexes with transition metals and are used for preventing corrosion in water. All isolated 2-aminoimidazole derivatives and complexes were synthesized not only for structural confirmation and chemical understanding but to further study their bioactivity during endochondral differentiation, particularly the positively screened imidazolone derivatives. Compounds leucettamine B, clathridine A and clathridimine were found to increase type X collagen transcription and stimulate endochondral ossification in the ATDC5 micromass model.
作为筛选海洋生物以鉴定促进软骨内骨形成的先导分子的结果,发现钙质海绵在软骨内分化过程中表现出显著的活性。在进一步的分子网络分析、去重复和化学分级分离后,得到了已知的克拉定 A 相关代谢物 和同二聚体复合物 (克拉定 A)Zn(),以及新的不稳定的杂二聚体复合物 (克拉定 A-克拉定因)Zn()。由于混合物中一些代谢物和配合物的不稳定性,导致通过粗提物的 LC-MS 分析注释的锌配合物发生变化,我们结合了预测分子的分离及其合成,以确认其结构并了解其反应性。有趣的是,我们还发现了大量的污染物苯并三唑 (BTZ)()和其半二聚体 (BTZ)CH(),它们已知与过渡金属形成配合物,并用于防止水中的腐蚀。所有分离得到的 2-氨基咪唑衍生物和配合物不仅用于结构确认和化学理解,还用于研究它们在软骨内分化过程中的生物活性,特别是阳性筛选出的咪唑啉酮衍生物。发现亮肽碱 B、克拉定 A 和克拉定因能增加 X 型胶原的转录,并刺激 ATDC5 微团模型中的软骨内骨化。