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牙鲆左右色素沉着模式与黑皮质素受体(MC1R和MC5R)的表达水平相关,而与刺鼠信号蛋白1(ASIP1)的表达无关。

Left-right pigmentation pattern of Japanese flounder corresponds to expression levels of melanocortin receptors (MC1R and MC5R), but not to agouti signaling protein 1 (ASIP1) expression.

作者信息

Matsuda Nao, Kasagi Satoshi, Nakamaru Toru, Masuda Reiji, Takahashi Akiyoshi, Tagawa Masatomo

机构信息

Division of Applied Biosciences, Graduate School of Agriculture, Kyoto University, Kitashirakawa, Sakyo, Kyoto 606-8502, Japan.

School of Marine Biosciences, Kitasato University, 1-15-1 Kitasato, Minami-ku, Sagamihara, Kanagawa 252-0373, Japan.

出版信息

Gen Comp Endocrinol. 2018 Jun 1;262:90-98. doi: 10.1016/j.ygcen.2018.03.019. Epub 2018 Mar 21.

Abstract

Body coloration in flatfish is one of the most distinctive asymmetries in the animal kingdom, although the fundamental molecular mechanism of the pigmentation is unclear. In the dorso-ventral coloration (countershading) of other teleost fishes, ventral-specific expression of agouti signaling protein 1 (ASIP1), an endogenous antagonist of melanocortin 1 receptor (MC1R), has been reported to play a pivotal role. Contribution of ASIP1 is also suggested in the asymmetrical pigmentation of flatfish. In order to confirm the contribution of ASIP1 and further examine receptor function in the body coloration of Japanese flounder, expression levels of asip1, mc1r, melanocortin 5 receptor (mc5r), and melanin-concentrating hormone receptor 2 (mchr2) were measured in the normally pigmented area of the left side, the normally non-pigmented area of the right side, and the abnormally pigmented (exhibiting hypermelanosis) area of the right side. Measurement was also carried out under conditions of hypermelanosis stimulated by cortisol and during the transition from non-pigmentation to pigmentation in areas of hypermelanosis. Contrary to our expectations, no difference was detected in asip1 expression between pigmented and non-pigmented areas. There was also no difference between normal and hormonally stimulated pigmented conditions in areas of hypermelanosis or during the transition process. Instead, the expression levels of mc1r, mc5r, and mchr2 were consistently higher in pigmented areas, and were especially increased under hormonally stimulated conditions. In addition, expressions of these receptor genes increased prior to pigmentation in areas of future hypermelanosis. Our results suggest that MC1Rand MC5R, but not necessarily ASIP1, contribute to pigmentation and hypermelanosis in Japanese flounder. We propose a yet unknown molecular mechanism for asymmetrical pigmentation in flatfish that is distinct from that of countershading in other vertebrates.

摘要

比目鱼的体色是动物界最显著的不对称特征之一,尽管色素沉着的基本分子机制尚不清楚。在其他硬骨鱼类的背腹体色(反荫蔽)中,据报道黑皮质素1受体(MC1R)的内源性拮抗剂刺鼠信号蛋白1(ASIP1)在腹侧特异性表达中起关键作用。ASIP1对比目鱼不对称色素沉着的作用也得到了提示。为了证实ASIP1的作用,并进一步研究受体功能在牙鲆体色中的作用,我们测量了左侧正常色素沉着区域、右侧正常无色素沉着区域以及右侧异常色素沉着(表现为色素沉着过度)区域中asip1、mc1r、黑皮质素5受体(mc5r)和黑色素浓缩激素受体2(mchr2)的表达水平。在皮质醇刺激引起色素沉着过度的条件下,以及在色素沉着过度区域从无色素沉着向色素沉着转变的过程中,也进行了测量。与我们的预期相反,在色素沉着区域和无色素沉着区域之间,asip1表达没有差异。在色素沉着过度区域或转变过程中,正常色素沉着条件和激素刺激色素沉着条件之间也没有差异。相反,mc1r、mc5r和mchr2的表达水平在色素沉着区域始终较高,在激素刺激条件下尤其升高。此外,在未来色素沉着过度区域,这些受体基因的表达在色素沉着之前就增加了。我们的结果表明,MC1R和MC5R,而不一定是ASIP1,对牙鲆的色素沉着和色素沉着过度有贡献。我们提出了一种比目鱼不对称色素沉着的未知分子机制,该机制不同于其他脊椎动物的反荫蔽机制。

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