Ha Byung Hak, Ahn Hee-Chul, Kang Sung Hwan, Tanaka Keiji, Chung Chin Ha, Kim Eunice Eun Kyeong
Life Sciences Division, Korea Institute of Science and Technology, Sungbuk-Gu, Seoul, Korea.
J Biol Chem. 2008 May 23;283(21):14893-900. doi: 10.1074/jbc.M708756200. Epub 2008 Mar 4.
Ubiquitin-fold modifier 1 (Ufm1) is a newly identified ubiquitin-like protein. Like ubiquitin and other ubiquitin-like proteins, Ufm1 is synthesized as a precursor that needs to be processed to expose the conserved C-terminal glycine prior to its conjugation to target proteins. Two novel proteases, named UfSP1 and UfSP2, have been shown to be responsible for the release of Ufm1 from Ufm1-conjugated cellular proteins as well as for the processing of its precursor. They show no sequence homology with known proteases. Here, we describe the 1.7A resolution crystal structure of mouse UfSP1, consisting of 217 amino acids. The structure reveals that it is a novel cysteine protease having a papain-like fold, with Cys(53), Asp(175), and His(177) that form a catalytic triad, and Tyr(41) that participates in the formation of the oxyanion hole. This differs from the canonical catalytic triad of papain-like proteases in that the aspartate and the histidine residues are from the "Asp-Pro-His" box. The Asp-Pro-His configuration seen in UfSP1, together with Atg4B and M48(USP), seem to form a new subfamily of the cysteine protease superfamily. The mutagenesis study of the active site residues confirms structural basis for catalysis. The interaction between UfSP1 and Ufm1 appears quite substantial, since the K(D) value was estimated to be 1.6 mum by the isothermal titration calorimetry analysis. Furthermore, the NMR data shows that the loop between beta3 and alpha2 in addition to the C-terminal region of Ufm1 plays a role in binding to UfSP1.
泛素折叠修饰因子1(Ufm1)是一种新发现的类泛素蛋白。与泛素及其他类泛素蛋白一样,Ufm1最初以前体形式合成,在与靶蛋白结合之前需要进行加工以暴露出保守的C末端甘氨酸。已证实两种新型蛋白酶UfSP1和UfSP2负责从与Ufm1结合的细胞蛋白中释放Ufm1以及加工其前体。它们与已知蛋白酶没有序列同源性。在此,我们描述了由217个氨基酸组成的小鼠UfSP1的1.7埃分辨率晶体结构。该结构表明它是一种具有木瓜蛋白酶样折叠的新型半胱氨酸蛋白酶,其Cys(53)、Asp(175)和His(177)形成催化三联体,Tyr(41)参与氧阴离子洞的形成。这与木瓜蛋白酶样蛋白酶的经典催化三联体不同,因为天冬氨酸和组氨酸残基来自“Asp-Pro-His”框。在UfSP1中看到的Asp-Pro-His构型,与Atg4B和M48(USP)一起,似乎形成了半胱氨酸蛋白酶超家族的一个新亚家族。对活性位点残基的诱变研究证实了催化的结构基础。UfSP1与Ufm1之间的相互作用似乎相当显著,因为通过等温滴定量热分析估计K(D)值为1.6 μM。此外,核磁共振数据表明,除了Ufm1的C末端区域外,β3和α2之间的环在与UfSP1的结合中起作用。