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Platypus and opossum calcitonins exhibit strong activities, even though they belong to mammals.

作者信息

Yamashita Teruhito, Udagawa Nobuyuki, Thirukonda Gnanasagar Janardhanan, Uehara Shunsuke, Yamauchi Hirose, Suzuki Nobuo, Li Feng, Kobayashi Yasuhiro, Takahashi Naoyuki

机构信息

Institute for Oral Science, Matsumoto Dental University, 1780 Hirooka-Gobara, Shiojiri, Nagano 399-0781, Japan.

Department of Oral Biochemistry, Matsumoto Dental University, 1780 Hirooka-Gobara, Shiojiri, Nagano 399-0781, Japan.

出版信息

Gen Comp Endocrinol. 2017 May 15;246:270-278. doi: 10.1016/j.ygcen.2017.01.001. Epub 2017 Jan 4.

DOI:10.1016/j.ygcen.2017.01.001
PMID:28062306
Abstract

In mammalian assay systems, calcitonin peptides of non-mammalian species exhibit stronger activity than those of mammals. Recently, comparative analyses of a wide-range of species revealed that platypus and opossum, which diverged early from other mammals, possess calcitonins that are more similar in amino acid sequence to those of non-mammals than mammals. We herein determined whether platypus and opossum calcitonins exhibit similar biological activities to those of non-mammalian calcitonins using an assay of actin ring formation in mouse osteoclasts. We also compared the dose-dependent effects of each calcitonin on cAMP production in osteoclasts. Consistent with the strong similarities in their primary amino acid sequences, platypus and opossum calcitonins disrupted actin rings with similar efficacies to that of salmon calcitonin. Human calcitonin exhibited the weakest inhibitory potency and required a 100-fold higher concentration (EC=3×10M) than that of salmon calcitonin (EC=2×10M). Platypus and opossum calcitonins also induced cAMP production in osteoclast cultures with the same efficacies as that of salmon calcitonin. Thus, platypus and opossum calcitonins exhibited strong biological activities, similar to those of the salmon. In addition, phylogenetic analysis revealed that platypus and opossum calcitonins clustered with the salmon-type group but not human- or porcine-type group. These results suggest that platypus and opossum calcitonins are classified into the salmon-type group, in terms of the biological activities and amino acid sequences.

摘要

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