Stefely Jonathan A, Reidenbach Andrew G, Ulbrich Arne, Oruganty Krishnadev, Floyd Brendan J, Jochem Adam, Saunders Jaclyn M, Johnson Isabel E, Minogue Catherine E, Wrobel Russell L, Barber Grant E, Lee David, Li Sheng, Kannan Natarajan, Coon Joshua J, Bingman Craig A, Pagliarini David J
Department of Biochemistry, University of Wisconsin-Madison, Madison, WI 53706, USA.
Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706, USA.
Mol Cell. 2015 Jan 8;57(1):83-94. doi: 10.1016/j.molcel.2014.11.002. Epub 2014 Dec 11.
The ancient UbiB protein kinase-like family is involved in isoprenoid lipid biosynthesis and is implicated in human diseases, but demonstration of UbiB kinase activity has remained elusive for unknown reasons. Here, we quantitatively define UbiB-specific sequence motifs and reveal their positions within the crystal structure of a UbiB protein, ADCK3. We find that multiple UbiB-specific features are poised to inhibit protein kinase activity, including an N-terminal domain that occupies the typical substrate binding pocket and a unique A-rich loop that limits ATP binding by establishing an unusual selectivity for ADP. A single alanine-to-glycine mutation of this loop flips this coenzyme selectivity and enables autophosphorylation but inhibits coenzyme Q biosynthesis in vivo, demonstrating functional relevance for this unique feature. Our work provides mechanistic insight into UbiB enzyme activity and establishes a molecular foundation for further investigation of how UbiB family proteins affect diseases and diverse biological pathways.
古老的泛醌生物合成蛋白激酶样家族参与类异戊二烯脂质生物合成,并与人类疾病有关,但泛醌激酶活性的证明由于未知原因一直难以实现。在此,我们定量定义了泛醌特异性序列基序,并揭示了它们在泛醌蛋白ADCK3晶体结构中的位置。我们发现多个泛醌特异性特征倾向于抑制蛋白激酶活性,包括占据典型底物结合口袋的N端结构域和通过对ADP建立异常选择性来限制ATP结合的独特富含A的环。该环的单个丙氨酸到甘氨酸突变翻转了这种辅酶选择性并实现了自磷酸化,但在体内抑制了辅酶Q生物合成,证明了这一独特特征的功能相关性。我们工作为泛醌酶活性提供了机制性见解,并为进一步研究泛醌家族蛋白如何影响疾病和多种生物途径奠定了分子基础。