Bédouet Laurent, Rusconi Filippo, Rousseau Marthe, Duplat Denis, Marie Arul, Dubost Lionel, Le Ny Karine, Berland Sophie, Péduzzi Jean, Lopez Evelyne
Muséum National d'Histoire Naturelle, USM 0401, ERT Valorisation de Molécules Bioactives d'Origine Marine, 7 rue Cuvier, Paris, France.
Comp Biochem Physiol B Biochem Mol Biol. 2006 Aug;144(4):532-43. doi: 10.1016/j.cbpb.2006.05.012. Epub 2006 Jun 7.
Nacre of Pinctada margaritifera displays a number of interesting biological activities on bone, mainly concentrated in a water-soluble organic matrix representing 0.24% of the nacre weight. Dialysis of that matrix through 8 kDa and 1 kDa cut-off membranes showed that 60% of it is made of small molecules of molecular masses below 1 kDa. Reversed-phase high-performance liquid chromatography of the small molecule fractions and subsequent electrospray ionization mass spectrometric analysis of 19 fractions thereof indicated the presence of at least 110 different molecules, in the range 100 Da-700 Da. Evidence for aggregate-forming properties of the small molecules was given. Amino acid analysis revealed that most of the small molecules were not peptides and tandem mass spectrometric gas-phase fragmentations clearly indicated a structural relationship between several molecules. Intriguingly, differences of a single Dalton between mono-charged ions peaks were observed. Further, approximately 40 analytes could be arranged in a ladder-like manner with mass spaces of 57 Da. Some of the water-soluble peptide sequences obtained after MS/MS fragmentation revealed that the 57 Da shift corresponds to the repetition of glycine residues. Furthermore, the exchange of glycine against alanine explains the 14 Da shift observed between some peptides. These data show for the first time that small molecules, especially peptides, are prevalent components of nacre. The molecular species described in this report might have a functional role in nacre.
珠母贝的珍珠层对骨骼具有多种有趣的生物活性,主要集中在一种水溶性有机基质中,该基质占珍珠层重量的0.24%。通过8 kDa和1 kDa截留分子量的膜对该基质进行透析表明,其中60%由分子量低于1 kDa的小分子组成。对小分子部分进行反相高效液相色谱分析,并对其中19个部分进行随后的电喷雾电离质谱分析,结果表明存在至少110种不同的分子,分子量范围在100 Da至700 Da之间。给出了小分子具有聚集形成特性的证据。氨基酸分析表明,大多数小分子不是肽,串联质谱气相碎片化分析清楚地表明了几种分子之间的结构关系。有趣的是,观察到单电荷离子峰之间相差一个道尔顿。此外,大约40种分析物可以以57 Da的质量间隔呈阶梯状排列。一些在MS/MS碎片化后获得的水溶性肽序列表明,57 Da的位移对应于甘氨酸残基的重复。此外,甘氨酸被丙氨酸取代解释了在一些肽之间观察到的14 Da的位移。这些数据首次表明小分子,尤其是肽,是珍珠层的普遍成分。本报告中描述的分子种类可能在珍珠层中具有功能作用。