General Biochemistry, TU Dresden, Dresden 01062, Germany.
Mar Drugs. 2013 Apr 17;11(4):1271-87. doi: 10.3390/md11041271.
Demosponges possess a skeleton made of a composite material with various organic constituents and/or siliceous spicules. Chitin is an integral part of the skeleton of different sponges of the order Verongida. Moreover, sponges of the order Verongida, such as Aplysina cavernicola or Ianthella basta, are well-known for the biosynthesis of brominated tyrosine derivates, characteristic bioactive natural products. It has been unknown so far whether these compounds are exclusively present in the cellular matrix or whether they may also be incorporated into the chitin-based skeletons. In the present study, we therefore examined the skeletons of A. cavernicola and I. basta with respect to the presence of bromotyrosine metabolites. The chitin-based-skeletons isolated from these sponges indeed contain significant amounts of brominated compounds, which are not easily extractable from the skeletons by common solvents, such as MeOH, as shown by HPLC analyses in combination with NMR and IR spectroscopic measurements. Quantitative potentiometric analyses confirm that the skeleton-associated bromine mainly withstands the MeOH-based extraction. This observation suggests that the respective, but yet unidentified, brominated compounds are strongly bound to the sponge skeletons, possibly by covalent bonding. Moreover, gene fragments of halogenases suggested to be responsible for the incorporation of bromine into organic molecules could be amplified from DNA isolated from sponge samples enriched for sponge-associated bacteria.
海绵动物拥有由各种有机成分和/或硅质骨针组成的复合材料骨架。几丁质是 Verongida 目不同海绵骨架的一个组成部分。此外,Verongida 目的海绵,如 Aplysina cavernicola 或 Ianthella basta,以生物合成溴代酪氨酸衍生物而闻名,这些化合物是具有特征生物活性的天然产物。到目前为止,还不清楚这些化合物是否仅存在于细胞基质中,或者它们是否也可以整合到基于几丁质的骨架中。在本研究中,我们因此研究了 A. cavernicola 和 I. basta 的骨架中是否存在溴代酪氨酸代谢物。从这些海绵中分离出的基于几丁质的骨架确实含有大量的溴化化合物,如 HPLC 分析结合 NMR 和 IR 光谱测量所示,这些化合物用常见的溶剂(如甲醇)很难从骨架中提取出来。定量电位分析证实,骨架相关的溴主要能抵抗基于甲醇的提取。这一观察结果表明,各自的但尚未确定的溴化化合物与海绵骨架结合得非常紧密,可能是通过共价键结合。此外,从富含海绵相关细菌的海绵样本中分离的 DNA 可以扩增出被认为负责将溴掺入有机分子的卤化酶基因片段。