Wang Xiaohong, Schröder Heinz C, Schlossmacher Ute, Neufurth Meik, Feng Qingling, Diehl-Seifert Bärbel, Müller Werner E G
ERC Advanced Investigator Grant Research Group at Institute for Physiological Chemistry, University Medical Center of the Johannes Gutenberg University Mainz, Duesbergweg 6, 55128, Mainz, Germany,
Calcif Tissue Int. 2014 May;94(5):495-509. doi: 10.1007/s00223-013-9833-4. Epub 2013 Dec 28.
Ca-phosphate/hydroxyapatite (HA) crystals constitute the mineral matrix of vertebrate bones, while Ca-carbonate is the predominant mineral of many invertebrates, like mollusks. Recent results suggest that CaCO₃ is also synthesized during early bone formation. We demonstrate that carbonic anhydrase-driven CaCO₃ formation in vitro is activated by organic extracts from the demosponge Suberites domuncula as well as by quinolinic acid, one component isolated from these extracts. Further results revealed that the stimulatory effect of bicarbonate (HCO₃ (-)) ions on mineralization of osteoblast-like SaOS-2 cells is strongly enhanced if the cells are exposed to inorganic polyphosphate (polyP), a linear polymer of phosphate linked by energy-rich phosphodiester bonds. The effect of polyP, administered as polyP (Ca²⁺ salt), on HA formation was found to be amplified by addition of the carbonic anhydrase-activating sponge extract or quinolinic acid. Our results support the assumption that CaCO₃ deposits, acting as bio-seeds for Ca-carbonated phosphate formation, are formed as an intermediate during HA mineralization and that the carbonic anhydrase-mediated formation of those deposits is under a positive-negative feedback control by bone alkaline phosphatase-dependent polyP metabolism, offering new targets for therapy of bone diseases/defects.
磷酸钙/羟基磷灰石(HA)晶体构成了脊椎动物骨骼的矿物质基质,而碳酸钙则是许多无脊椎动物(如软体动物)的主要矿物质。最近的研究结果表明,碳酸钙在早期骨形成过程中也会合成。我们证明,在体外,碳酸酐酶驱动的碳酸钙形成可被海绵纲的软海绵(Suberites domuncula)的有机提取物以及从这些提取物中分离出的一种成分喹啉酸激活。进一步的结果显示,如果成骨样SaOS-2细胞暴露于无机多聚磷酸盐(polyP)(一种由富含能量的磷酸二酯键连接的磷酸盐线性聚合物),碳酸氢根(HCO₃ (-))离子对其矿化的刺激作用会大大增强。发现以多聚磷酸钙盐形式给予的多聚磷酸盐对羟基磷灰石形成的作用,会因添加碳酸酐酶激活的海绵提取物或喹啉酸而增强。我们的结果支持这样一种假设,即碳酸钙沉积物作为碳酸化磷酸钙形成的生物种子,在羟基磷灰石矿化过程中作为中间产物形成,并且碳酸酐酶介导的这些沉积物的形成受到骨碱性磷酸酶依赖性多聚磷酸盐代谢的正负反馈控制,这为骨疾病/缺陷的治疗提供了新的靶点。