Yu Quan D, Oldring Asa P, Powlesland Alex S, Tso Cynthia K W, Yang Chunxuan, Drickamer Kurt, Taylor Maureen E
Division of Molecular Biosciences, Department of Life Sciences, Imperial College, London SW7 2AZ, UK.
J Mol Biol. 2009 Apr 17;387(5):1075-80. doi: 10.1016/j.jmb.2009.02.046. Epub 2009 Feb 26.
Multivalent binding of glycans on pathogens and on mammalian cells by the receptors DC-SIGN (CD209) and DC-SIGNR (L-SIGN, CD299) is dependent on correct disposition of the C-type carbohydrate-recognition domains projected at the C-terminal ends of necks at the cell surface. In the work reported here, neck domains of DC-SIGN and DC-SIGNR expressed in isolation are shown to form tetramers in the absence of the CRDs. Stability analysis indicates that interactions between the neck domains account fully for the stability of the tetrameric extracellular portions of the receptors. The neck domains are approximately 40% alpha-helical based on circular dichroism analysis. However, in contrast to other glycan-binding receptors in which fully helical neck regions are intimately associated with C-terminal C-type CRDs, the neck domains in DC-SIGN and DC-SIGNR act as autonomous tetramerization domains and the neck domains and CRDs are organized independently. Neck domains from polymorphic forms of DC-SIGNR that lack some of the repeat sequences show modestly reduced stability, but differences near the C-terminal end of the neck domains lead to significantly enhanced stability of DC-SIGNR tetramers compared to DC-SIGN.
病原体和哺乳动物细胞上的聚糖通过受体DC-SIGN(CD209)和DC-SIGNR(L-SIGN,CD299)进行多价结合,这取决于细胞表面颈部C末端突出的C型碳水化合物识别结构域的正确排列。在本文报道的研究中,单独表达的DC-SIGN和DC-SIGNR的颈部结构域在没有CRD的情况下形成四聚体。稳定性分析表明,颈部结构域之间的相互作用完全决定了受体四聚体细胞外部分的稳定性。基于圆二色性分析,颈部结构域约40%为α螺旋结构。然而,与其他聚糖结合受体不同,在这些受体中完全螺旋的颈部区域与C末端的C型CRD紧密相关,而DC-SIGN和DC-SIGNR中的颈部结构域作为自主的四聚化结构域,颈部结构域和CRD是独立组织的。缺乏一些重复序列的DC-SIGNR多态形式的颈部结构域稳定性略有降低,但与DC-SIGN相比,颈部结构域C末端附近的差异导致DC-SIGNR四聚体的稳定性显著增强。