Lee C H, Chinpaisal C, Wei L N
Department of Pharmacology, University of Minnesota Medical School, Minneapolis, Minnesota 55455, USA.
J Biol Chem. 1998 Sep 25;273(39):25209-15. doi: 10.1074/jbc.273.39.25209.
A unique heterodimerization pathway involving orphan receptors TR2 and TR4 is demonstrated. TR2 and TR4 preferentially form heterodimers in solution as well as on DNA elements containing a direct repeat-5 (DR5). The in vitro interaction between TR2 and TR4 is demonstrated by the yeast and the mammalian two-hybrid interaction assays, the pull-down assay, and the gel mobility shift assay. The in vivo interaction is demonstrated by following the intracellular localization of fusion receptors tagged with a green fluorescent protein. The dimerization is mediated by the ligand binding domains, and the three leucine residues on helix 10 of TR2 are critical for this interaction. In addition, coexpression of these two receptors exerts a much stronger repressive activity on a DR5-containing reporter than expressing either receptor alone. In the developing testis, TR2 and TR4 are coexpressed in the same testicular cell populations and exhibit a parallel pattern of expression along development. The preferential heterodimerization between TR2 and TR4 and their coexistence in specific germ cell populations suggest a physiological role of TR2/TR4 heterodimers in germ cell development.
研究表明了一种涉及孤儿受体TR2和TR4的独特异源二聚化途径。TR2和TR4在溶液中以及在含有同向重复序列5(DR5)的DNA元件上优先形成异源二聚体。TR2和TR4之间的体外相互作用通过酵母和哺乳动物双杂交相互作用测定、下拉测定和凝胶迁移率变动测定得以证明。体内相互作用通过追踪绿色荧光蛋白标记的融合受体的细胞内定位得以证明。二聚化由配体结合域介导,TR2第10螺旋上的三个亮氨酸残基对这种相互作用至关重要。此外,与单独表达任一受体相比,这两种受体的共表达对含DR5的报告基因发挥更强的抑制活性。在发育中的睾丸中,TR2和TR4在相同的睾丸细胞群体中共表达,并且在发育过程中呈现平行的表达模式。TR2和TR4之间的优先异源二聚化以及它们在特定生殖细胞群体中的共存表明TR2/TR4异源二聚体在生殖细胞发育中具有生理作用。