Department of Agricultural Biotechnology, Research Institute of Agriculture and Life Sciences, College of Agriculture and Life Sciences, Seoul National University, Seoul, South Korea; and.
Institute for Biomedical Sciences, Shinshu University, Minamiminowa, Japan.
FASEB J. 2018 May;32(5):2563-2573. doi: 10.1096/fj.201700924RR. Epub 2018 Jan 2.
NANOG plays a pivotal role in pluripotency acquisition and lineage specification in higher vertebrates, and its expression is restricted to primordial germ cells (PGCs) during early embryonic development. Mammalian NANOG self-associates via conserved tryptophan-repeat motifs in the C-terminal domain (CTD) to maintain pluripotency. Avian NANOG, however, lacks the conserved motifs, and the molecular mechanism underlying the biologic function is not clearly understood. Here, using spectroscopic and biochemical methods as well as cell-based assays, we report that chicken NANOG (cNANOG) oligomerizes through its CTD via a novel folding-upon-binding mechanism. The CTD of cNANOG is disordered as a monomer and associates into an α-helical multimer driven by intermolecular hydrophobic interactions. Mutation of key aromatic residues in the CTD abrogates the self-association, leading to a loss of the proliferation of chicken PGCs and blastoderm cells. Our results demonstrate that the CTD of cNANOG belongs to a novel IDP that switches into a helical oligomer via self-association, enabling the maintenance of PGCs and blastoderm cells.-Choi, H. J., Kim, I., Lee, H. J., Park, Y. H., Suh, J.-Y., Han, J. Y. Chicken NANOG self-associates via a novel folding-upon-binding mechanism.
NANOG 在高等脊椎动物的多能性获得和谱系特化中发挥着关键作用,其表达在早期胚胎发育过程中局限于原始生殖细胞(PGCs)。哺乳动物 NANOG 通过 C 末端结构域(CTD)中的保守色氨酸重复基序自我缔合以维持多能性。然而,禽类 NANOG 缺乏保守基序,其生物学功能的分子机制尚不清楚。在这里,我们使用光谱和生化方法以及基于细胞的测定,报告鸡 NANOG(cNANOG)通过其 CTD 通过一种新的结合折叠机制寡聚化。cNANOG 的 CTD 作为单体是无规卷曲的,并通过分子间疏水相互作用缔合形成α-螺旋多聚体。CTD 中关键芳香族残基的突变会破坏自缔合,导致鸡 PGC 和囊胚细胞的增殖丧失。我们的结果表明,cNANOG 的 CTD 属于一种新型 IDP,它通过自缔合转变为螺旋寡聚体,从而维持 PGC 和囊胚细胞。