Békési Angéla, Zagyva Imre, Hunyadi-Gulyás Eva, Pongrácz Veronika, Kovári Júlia, Nagy Agnes O, Erdei Anna, Medzihradszky Katalin F, Vértessy Beáta G
Institute of Enzymology, Biological Research Center, Hungarian Academy of Sciences, H-1518 Budapest, Hungary.
J Biol Chem. 2004 May 21;279(21):22362-70. doi: 10.1074/jbc.M313647200. Epub 2004 Mar 2.
dUTPase prevents uracil incorporation into DNA by strict regulation of the cellular dUTP:dTTP ratio. Lack of the enzyme initiates thymineless cell death, prompting studies on enzyme regulation. We investigated expression pattern and localization of Drosophila dUTPase. Similarly to human, two isoforms of the fly enzyme were identified at both mRNA and protein levels. During larval stages, a drastic decrease of dUTPase expression was demonstrated at the protein level. In contrast, dUTPase mRNAs display constitutive character throughout development. A putative nuclear localization signal was identified in one of the two isoforms. However, immunohistochemistry of ovaries and embryos did not show a clear correlation between the presence of this signal and subcellular localization of the protein, suggesting that the latter may be perturbed by additional factors. Results are in agreement with a multilevel regulation of dUTPase in the Drosophila proteome, possibly involving several interacting protein partners of the enzyme. Using independent approaches, the existence of such macromolecular partners was verified.
dUTP酶通过严格调控细胞内dUTP与dTTP的比例来防止尿嘧啶掺入DNA。缺乏该酶会引发无胸腺细胞死亡,从而促使人们对酶的调控进行研究。我们研究了果蝇dUTP酶的表达模式和定位。与人类相似,在mRNA和蛋白质水平上均鉴定出果蝇该酶的两种同工型。在幼虫阶段,蛋白质水平上dUTP酶的表达急剧下降。相反,dUTP酶mRNA在整个发育过程中表现出组成性特征。在两种同工型之一中鉴定出一个假定的核定位信号。然而,卵巢和胚胎的免疫组织化学并未显示该信号的存在与蛋白质亚细胞定位之间存在明显的相关性,这表明后者可能受到其他因素的干扰。结果与果蝇蛋白质组中dUTP酶的多级调控一致,可能涉及该酶的几个相互作用的蛋白质伴侣。使用独立的方法,验证了此类大分子伴侣的存在。