Rahman M Azizur, Oomori Tamotsu, Uehara Tsuyoshi
Department of Marine and Environmental Sciences, University of the Ryukyus, Okinawa, Japan.
Mar Biotechnol (NY). 2008 Jan-Feb;10(1):31-8. doi: 10.1007/s10126-007-9030-4. Epub 2007 Sep 22.
Carbonic anhydrase (CA) is a key enzyme in the chemical reaction of living organisms and has been found to be associated with calcification in a number of invertebrates including calcareous sponges, but until now no direct evidence has been advanced to show CA activity in alcyonarian corals. However, it is essential to understand the role of CA in the process of biocalcification in alcyonarian. Here we describe the novel activity of CA and its relationship to the formation of calcified hard tissues in alcyonarian coral, Lobophytum crassum. We find that two CA proteins, which were partially purified by electro-elution treatment, can control the morphology of CaCO(3) crystals and one of them is potentially involved in the process of biocalcification. Previously, we isolated CA from the total extract of alcyonarian, and further, we report here a single protein, which has both calcium-binding and CA activities and is responsible for CaCO(3) nucleation and crystal growth. This matrix protein inhibited the precipitation of CaCO(3) from a saturated solution containing CaCl(2) and NaHCO(3), indicating that it can act as a negative regulator for calcification in the sclerites of alcyonarians. The effect of an inhibitor on the enzyme activity was also examined. These findings strongly support the idea that carbonic anhydrase domain in alcyonarian is involved in the calcification process. Our observations strongly suggest that the matrix protein in alcyonarian coral is not only a structural protein but also a catalyst.
碳酸酐酶(CA)是生物化学反应中的一种关键酶,已发现在包括钙质海绵在内的多种无脊椎动物中与钙化作用相关,但直到现在还没有直接证据表明软珊瑚中有CA活性。然而,了解CA在软珊瑚生物钙化过程中的作用至关重要。在这里,我们描述了CA的新活性及其与厚叶短指软珊瑚钙化硬组织形成的关系。我们发现,通过电洗脱处理部分纯化的两种CA蛋白可以控制CaCO₃晶体的形态,其中一种可能参与生物钙化过程。此前,我们从软珊瑚的总提取物中分离出了CA,此外,我们在此报告一种单一蛋白,它同时具有钙结合活性和CA活性,负责CaCO₃的成核和晶体生长。这种基质蛋白抑制了CaCO₃从含有CaCl₂和NaHCO₃的饱和溶液中沉淀,表明它可以作为软珊瑚骨针钙化的负调节剂。还研究了抑制剂对酶活性的影响。这些发现有力地支持了软珊瑚中的碳酸酐酶结构域参与钙化过程的观点。我们的观察结果强烈表明,软珊瑚中的基质蛋白不仅是一种结构蛋白,也是一种催化剂。