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降钙素是一种重要的生理物质吗?

Is calcitonin an important physiological substance?

作者信息

Hirsch Philip F, Baruch Hans

机构信息

University of North Carolina, Chapel Hill, NC, USA.

出版信息

Endocrine. 2003 Aug;21(3):201-8. doi: 10.1385/ENDO:21:3:201.

Abstract

That calcitonin (CT) at supraphysiological doses is hypocalcemic led to the mistaken conclusion that it was important for calcium homeostasis and this idea has persisted to this day. Despite these findings, there is no readily apparent pathology due to CT excess or deficiency and there is no evidence that circulating CT is of substantial benefit to any mammal. Mammalian CT at physiological doses is not essential and very likely the CT gene has survived because of the gene's alternate mRNA pathway to produce calcitonin-gene-related peptide found in neural tissues. CT is not involved in calcium homeostasis or any other important physiological function, except, possibly, as an adjunct to protection of the skeleton under conditions of calcium stress, and appears to be in the process of becoming vestigial. CT produced in other tissues has paracrine actions that modulate functions such as proton transport, acid-base balance, prolactin secretion, and gastrointestinal motility. C-cells in mammals evolved from the ultimobranchial body that secretes CT in all lower vertebrates. It is highly probable that changes in amino acid sequence during evolution are responsible for the loss of activity, as fish CT is about 40 times as potent as human CT. CT may have been very important to survival in seawater fish, but the presence of the parathyroid gland and other evolutionary changes occurring in tetrapods suggest that the function of CT is no longer important.

摘要

超生理剂量的降钙素(CT)具有降钙作用,这导致了一个错误的结论,即它对钙稳态很重要,而且这个观点一直持续到今天。尽管有这些发现,但并没有因CT过量或缺乏而明显出现的病理状况,也没有证据表明循环中的CT对任何哺乳动物有实质性益处。生理剂量的哺乳动物CT并非必不可少,而且很可能CT基因得以保留是因为该基因通过交替的mRNA途径产生在神经组织中发现的降钙素基因相关肽。CT不参与钙稳态或任何其他重要的生理功能,可能除了在钙应激条件下作为保护骨骼的辅助手段外,而且似乎正处于退化过程中。在其他组织中产生的CT具有旁分泌作用,可调节诸如质子转运、酸碱平衡、催乳素分泌和胃肠蠕动等功能。哺乳动物的C细胞从在所有低等脊椎动物中分泌CT的鳃后体进化而来。很可能进化过程中氨基酸序列的变化导致了活性丧失,因为鱼的CT效力约为人类CT的40倍。CT可能对海水鱼的生存非常重要,但甲状旁腺的存在以及四足动物发生的其他进化变化表明CT的功能已不再重要。

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