Sanyal Anwesha, Chen Andy J, Nakayasu Ernesto S, Lazar Cheri S, Zbornik Erica A, Worby Carolyn A, Koller Antonius, Mattoo Seema
From the Department of Biological Sciences and.
Bindley Biosciences Center, Purdue University, West Lafayette, Indiana 47907.
J Biol Chem. 2015 Mar 27;290(13):8482-99. doi: 10.1074/jbc.M114.618348. Epub 2015 Jan 19.
The maintenance of endoplasmic reticulum (ER) homeostasis is a critical aspect of determining cell fate and requires a properly functioning unfolded protein response (UPR). We have discovered a previously unknown role of a post-translational modification termed adenylylation/AMPylation in regulating signal transduction events during UPR induction. A family of enzymes, defined by the presence of a Fic (filamentation induced by cAMP) domain, catalyzes this adenylylation reaction. The human genome encodes a single Fic protein, called HYPE (Huntingtin yeast interacting protein E), with adenylyltransferase activity but unknown physiological target(s). Here, we demonstrate that HYPE localizes to the lumen of the endoplasmic reticulum via its hydrophobic N terminus and adenylylates the ER molecular chaperone, BiP, at Ser-365 and Thr-366. BiP functions as a sentinel for protein misfolding and maintains ER homeostasis. We found that adenylylation enhances BiP's ATPase activity, which is required for refolding misfolded proteins while coping with ER stress. Accordingly, HYPE expression levels increase upon stress. Furthermore, siRNA-mediated knockdown of HYPE prevents the induction of an unfolded protein response. Thus, we identify HYPE as a new UPR regulator and provide the first functional data for Fic-mediated adenylylation in mammalian signaling.
内质网(ER)稳态的维持是决定细胞命运的关键因素,需要正常运作的未折叠蛋白反应(UPR)。我们发现了一种称为腺苷酸化/AMP化的翻译后修饰在UPR诱导过程中调节信号转导事件方面的先前未知作用。一类由Fic(cAMP诱导的丝状化)结构域的存在所定义的酶催化这种腺苷酸化反应。人类基因组编码一种单一的Fic蛋白,称为HYPE(亨廷顿酵母相互作用蛋白E),具有腺苷酸转移酶活性但生理靶点未知。在这里,我们证明HYPE通过其疏水N端定位于内质网腔,并在Ser-365和Thr-366位点对ER分子伴侣BiP进行腺苷酸化。BiP作为蛋白质错误折叠的哨兵并维持ER稳态。我们发现腺苷酸化增强了BiP的ATPase活性,这是在应对ER应激时重新折叠错误折叠蛋白所必需的。因此,应激时HYPE表达水平升高。此外,siRNA介导的HYPE敲低可阻止未折叠蛋白反应的诱导。因此,我们将HYPE鉴定为一种新的UPR调节因子,并提供了Fic介导的腺苷酸化在哺乳动物信号传导中的首个功能数据。