Zhu Jiang, Li Shuangli, Ramelot Theresa A, Kennedy Michael A, Liu Maili, Yang Yunhuang
State Key Laboratory of Magnetic Resonance and Atomic Molecular Physics, Wuhan Center for Magnetic Resonance, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071, China.
State Key Laboratory of Magnetic Resonance and Atomic Molecular Physics, Wuhan Center for Magnetic Resonance, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071, China; University of Chinese Academy of Sciences, Beijing 100049, China.
Biochem Biophys Res Commun. 2018 Feb 5;496(2):575-581. doi: 10.1016/j.bbrc.2018.01.099.
Human protein TGIF1 is an essential regulator of cell fate with broad roles in different tissues, and has been implicated in holoprosencephaly (HPE) and many cancers. The function of TGIF1 in transcriptional regulation depends on its three-amino acid loop extension (TALE) type of homeodomain (HD). Two missense mutations that led to P192A and R219C substitutions in TGIF1-HD were previously found in HPE patients and suggested to be the causes for these cases. However, how these mutations affected TGIF1 function has not been investigated from a structural view. Here, we investigated the roles of P192 and R219 in TGIF1-HD structure packing through determining the NMR structure of TGIF1-HD. Surprisingly, P192 and R219 were found to play roles in packing α1 and α2 to α3 together with A190 and F215 through side-chain interactions. Circular dichroism (CD) showed that P192A and R219C mutants displayed structural change and less folding compared with wild-type TGIF1-HD, and H-N HSQC spectrum of P192A mutant exhibited chemical shift perturbations in all three helices of TGIF1-HD. Thus, it is suggested that P192A and R219C mutations led to structure disturbances of TGIF1-HD, which subsequently reduced the DNA-binding affinity of TGIF1-HD by 23-fold and 10-fold respectively, as revealed by the isothermal titration calorimetry (ITC) experiments. Our study provides structural insights of the probable pathogenesis mechanism of two TGIF1-related HPE cases, and evidences for the roles of P192 and R219 in HD folding.
人类蛋白质TGIF1是细胞命运的重要调节因子,在不同组织中发挥广泛作用,并与全前脑畸形(HPE)和多种癌症有关。TGIF1在转录调控中的功能取决于其具有三氨基酸环延伸(TALE)类型的同源结构域(HD)。先前在HPE患者中发现了导致TGIF1-HD中P192A和R219C替换的两个错义突变,并认为这些突变是这些病例的病因。然而,尚未从结构角度研究这些突变如何影响TGIF1的功能。在这里,我们通过确定TGIF1-HD的核磁共振结构,研究了P192和R219在TGIF1-HD结构堆积中的作用。令人惊讶的是,发现P192和R219通过侧链相互作用在将α1和α2与α3堆积在一起时发挥作用,同时还有A190和F215。圆二色性(CD)显示,与野生型TGIF1-HD相比,P192A和R219C突变体表现出结构变化且折叠较少,并且P192A突变体的H-N HSQC谱在TGIF1-HD的所有三个螺旋中均表现出化学位移扰动。因此,等温滴定量热法(ITC)实验表明,P192A和R219C突变导致TGIF1-HD的结构紊乱,随后分别使TGIF1-HD的DNA结合亲和力降低了23倍和10倍。我们的研究提供了两个与TGIF1相关的HPE病例可能的发病机制的结构见解,以及P192和R219在HD折叠中作用的证据。