Moharana Kedar, Zabeau Lennart, Peelman Frank, Ringler Philippe, Stahlberg Henning, Tavernier Jan, Savvides Savvas N
Unit for Structural Biology, Laboratory for Protein Biochemistry and Biomolecular Engineering (L-ProBE), Ghent University, 9000 Ghent, Belgium.
Flanders Institute for Biotechnology (VIB) and Department of Medical Protein Research, Ghent University, 9000 Ghent, Belgium.
Structure. 2014 Jun 10;22(6):866-77. doi: 10.1016/j.str.2014.04.012. Epub 2014 May 29.
Leptin activates its cognate receptor (LR) to regulate body weight and metabolically costly processes, such as reproduction and immune responses. Despite such benevolent pleiotropy, leptin-mediated signaling has been implicated in autoimmune diseases and breast cancer, thereby rejuvenating interest in leptin antagonism. We present comparative biochemical and structural studies of the LR ectodomain (LRecto) in complex with wild-type and antagonist leptin variants. We show that high-affinity binding of leptin to the cytokine receptor homology 2 domain of LRecto primes interactions with the Ig-domain (LRIg) of another leptin-bound LRecto to establish a quaternary assembly. In contrast, antagonist leptin variants carrying mutations at the LRIg binding site only enable binary complexes with LRecto. Acetylation of free cysteines in LRecto also abrogates quaternary complexes, suggesting a functional role for intrareceptor disulfides. We propose a revised conceptual framework for LR activation whereby leptin activates predimerized LR at the cell surface to seed higher order complexes with 4:4 stoichiometry.
瘦素激活其同源受体(LR)以调节体重以及代谢成本较高的过程,如生殖和免疫反应。尽管有这种有益的多效性,但瘦素介导的信号传导已被认为与自身免疫性疾病和乳腺癌有关,从而重新引发了对瘦素拮抗作用的兴趣。我们展示了LR胞外域(LRecto)与野生型和拮抗型瘦素变体复合物的比较生化和结构研究。我们表明,瘦素与LRecto的细胞因子受体同源2结构域的高亲和力结合引发了与另一个结合瘦素的LRecto的Ig结构域(LRIg)的相互作用,以建立四级组装。相比之下,在LRIg结合位点携带突变的拮抗型瘦素变体仅能与LRecto形成二元复合物。LRecto中游离半胱氨酸的乙酰化也消除了四级复合物,表明受体内二硫键具有功能作用。我们提出了一个关于LR激活的修订概念框架,即瘦素在细胞表面激活预二聚化的LR,以形成化学计量比为4:4的高阶复合物。