首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Melatonin synthesis: 14-3-3-dependent activation and inhibition of arylalkylamine N-acetyltransferase mediated by phosphoserine-205.
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Melatonin synthesis: 14-3-3-dependent activation and inhibition of arylalkylamine N-acetyltransferase mediated by phosphoserine-205.

机译:褪黑素合成:由磷酸丝氨酸205介导的14-3-3-依赖性激活和抑制芳基烷基胺N-乙酰基转移酶。

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摘要

The nocturnal increase in circulating melatonin in vertebrates is regulated by the activity of arylalkylamine N-acetyltransferase (AANAT), the penultimate enzyme in the melatonin pathway (serotonin --> N-acetylserotonin --> melatonin). Large changes in activity are linked to cyclic AMP-dependent protein kinase-mediated phosphorylation of AANAT T31. Phosphorylation of T31 promotes binding of AANAT to the dimeric 14-3-3 protein, which activates AANAT by increasing arylalkylamine affinity. In the current study, a putative second AANAT cyclic AMP-dependent protein kinase phosphorylation site, S205, was found to be approximately 55% phosphorylated at night, when T31 is approximately 40% phosphorylated. These findings indicate that ovine AANAT is dual-phosphorylated. Moreover, light exposure at night decreases T31 and S205 phosphorylation, consistent with a regulatory role of both sites. AANAT peptides containing either T31 or S205 associate with 14-3-3zeta in a phosphorylation-dependent manner; binding through phosphorylated (p)T31 is stronger than that through pS205, consistent with the location of only pT31 in a mode I binding motif, one of two recognized high-affinity 14-3-3-binding motifs AANAT protein binds to 14-3-3zeta through pT31 or pS205. Two-site binding lowers the Km for arylalkylamine substrate to approximately 30 microM. In contrast, single-site pS205 binding increases the Km to approximately 1,200 microM. Accordingly, the switch from dual to single pS205 binding of AANAT to 14-3-3 changes the Km for substrates by approximately 40-fold. pS205 seems to be part of a previously unrecognized 14-3-3-binding motif-pS/pT (X1-2)-COOH, referred to here as mode III.
机译:脊椎动物中循环褪黑激素的夜间增加受褪黑素途径中倒数第二个酶芳基烷基胺N-乙酰基转移酶(AANAT)的活性所调节(5-羟色胺-> N-乙酰基5-羟色胺->褪黑素)。活性的大变化与AAAMP T31的环AMP依赖性蛋白激酶介导的磷酸化有关。 T31的磷酸化促进AANAT与二聚体14-3-3蛋白的结合,后者通过增加芳基烷基胺亲和力来激活AANAT。在当前的研究中,发现一个假定的第二个AANAT环状AMP依赖性蛋白激酶磷酸化位点S205在晚上被磷酸化约55%,而T31则被磷酸化约40%。这些发现表明绵羊AANAT被双重磷酸化。此外,晚上的光线照射会降低T31和S205的磷酸化,这与两个位点的调节作用一致。含有T31或S205的AANAT肽以磷酸化依赖性方式与14-3-3zeta缔合;通过磷酸化(p)T31的结合比通过pS205的结合更强,这与模式I结合基序中仅pT31的位置一致,两个公认的高亲和力14-3-3-结合基序之一AANAT蛋白与14-3结合-3zeta到pT31或pS205。两点结合将芳基烷基胺底物的Km降低至约30 microM。相反,单点pS205结合将Km增加到大约1,200 microM。因此,从AANAT的双pS205结合到单pS205结合到14-3-3的转变将底物的Km改变了约40倍。 pS205似乎是先前无法识别的14-3-3-结合基序-pS / pT(X1-2)-COOH的一部分,在此称为模式III。

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