Kobayashi Yuki, Mizusawa Kanta, Yamanome Takeshi, Chiba Hiroaki, Takahashi Akiyoshi
School of Marine Biosciences, Kitasato University, Ofunato, Iwate 022-0101, Japan.
Gen Comp Endocrinol. 2009 May;161(3):419-24. doi: 10.1016/j.ygcen.2009.02.009. Epub 2009 Feb 24.
Melanocyte-stimulating hormone (MSH) is generated from a precursor protein, proopiomelanocortin (POMC), mainly in the pituitary. The barfin flounder, Verasper moseri, expresses three different POMC genes (Pomc), among which Pomc-c is also expressed in the skin. Herein, we characterized the biological significance of POMC and MSH produced in barfin flounder skin. The reverse transcription polymerase chain reaction showed the expression of Pomc-c in isolated non-chromatophoric dermal cells. Mass spectrometry analyses of fractions of skin extract separated by high-performance liquid chromatography revealed the presence of a peptide with a molecular mass corresponding to Des-acetyl (Ac)-alpha-MSH-C derived from POMC-C. These results indicate that, in addition to endocrine functions, MSH in barfin flounder is associated with skin pigmentation via paracrine mechanisms. On the other hand, in vitro studies showed that Des-Ac-alpha-MSH-C dispersed pigments in both melanophores and xanthophores. These functions are similar to those of Des-Ac-alpha-MSH, which differs from Des-Ac-alpha-MSH-C only at the C-terminus, generated from POMC-A and -B. Alpha-MSH, which has an acetyl group at the N-terminus, led to pigment dispersion in xanthophores, but showed no effect in melanophores. A series of bioassays indicated that acetylation enhances MSH activity in xanthophores, but inhibits it in melanophores, suggesting that receptors for MSHs expressed in xanthophores and melanophores are different from each other.
促黑素细胞激素(MSH)主要在垂体中由前体蛋白阿黑皮素原(POMC)生成。条石鲷(Verasper moseri)表达三种不同的POMC基因(Pomc),其中Pomc-c也在皮肤中表达。在此,我们对条石鲷皮肤中产生的POMC和MSH的生物学意义进行了表征。逆转录聚合酶链反应显示Pomc-c在分离出的非色素细胞真皮细胞中表达。对通过高效液相色谱分离的皮肤提取物馏分进行质谱分析,发现存在一种分子量与源自POMC-C的去乙酰化(Ac)-α-MSH-C相对应的肽。这些结果表明,除了内分泌功能外,条石鲷中的MSH还通过旁分泌机制与皮肤色素沉着相关。另一方面,体外研究表明,去乙酰化-α-MSH-C可使黑素细胞和黄色素细胞中的色素分散。这些功能与去乙酰化-α-MSH相似,去乙酰化-α-MSH与去乙酰化-α-MSH-C仅在C端不同,由POMC-A和-B产生。在N端具有乙酰基的α-MSH可导致黄色素细胞中的色素分散,但对黑素细胞没有影响。一系列生物测定表明,乙酰化增强了黄色素细胞中MSH的活性,但抑制了黑素细胞中的活性,这表明黄色素细胞和黑素细胞中表达的MSH受体彼此不同。