Silva Gunawardene Y I N, Bendena W G, Tobe S S, Chan S-M
Department of Zoology, The University of Hong Kong, Pokfulam Road, Hong Kong, Hong Kong.
Peptides. 2003 Oct;24(10):1591-7. doi: 10.1016/j.peptides.2003.07.022.
Farnesoic acid O-methyltransferase (FAMeT) catalyzes the conversion of farnesoic acid (FA) to methylfarnesoate (MF) by the mandibular organ (MO) of crustaceans. Here we report the cellular localization of FAMeT and radiochemical assay of endogenous FAMeT activity in shrimp (Metapenaeus ensis) and crayfish (Procambarus clarkii) tissues. As in the eyestalk (ES), FAMeT is concentrated in specific neurosecretory cells of the ventral nerve cord (VNC) whereas only weak FAMeT immunoreactivity was observed in the MO. FAMeT was also detected in the ventral nerve cord, heart (HET), eyestalk, and muscle of the juvenile shrimp. Although the VNC shows the greatest FAMeT immunoreactivity, the heart extract exhibited the highest FAMeT enzymatic activity. These results suggest that FAMeT in the VNC may be inactive or inactivated at the stages of development tested. Contrary to the previous reports in other crustaceans, MO extract in shrimp shows only low FAMeT activity. The eyestalk, epidermis, ovary and testis show appreciable FAMeT activity. The presence of FAMeT in neurosecretory cells of VNC and eyestalk of shrimp and crayfish implies a possible interaction of FAMeT with the eyestalk CHH-family of neuropeptides. The widespread activity of FAMeT suggests that it has a wide spectrum of action in many tissues that contribute to the function and regulation of MF synthesis in shrimp and crayfish.
法尼酸O - 甲基转移酶(FAMeT)催化甲壳类动物下颌器官(MO)将法尼酸(FA)转化为甲基法尼酯(MF)。在此,我们报告了对虾(凡纳滨对虾)和克氏原螯虾组织中FAMeT的细胞定位以及内源性FAMeT活性的放射化学测定。与眼柄(ES)一样,FAMeT集中在下腹神经索(VNC)的特定神经分泌细胞中,而在MO中仅观察到微弱的FAMeT免疫反应性。在幼虾的腹神经索、心脏(HET)、眼柄和肌肉中也检测到了FAMeT。虽然VNC显示出最强的FAMeT免疫反应性,但心脏提取物表现出最高的FAMeT酶活性。这些结果表明,在测试的发育阶段,VNC中的FAMeT可能无活性或已失活。与之前其他甲壳类动物的报道相反,对虾的MO提取物仅显示出较低的FAMeT活性。眼柄、表皮、卵巢和睾丸显示出明显的FAMeT活性。在对虾和克氏原螯虾的VNC和眼柄神经分泌细胞中存在FAMeT,这意味着FAMeT可能与眼柄神经肽CHH家族相互作用。FAMeT的广泛活性表明它在许多组织中具有广泛的作用,有助于对虾和克氏原螯虾中MF合成的功能和调节。