Lander Alexander J, Kong Yifu, Jin Yi, Wu Chuanliu, Luk Louis Y P
School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff CF10 3AT, U.K.
Department of Chemistry, College of Chemistry and Chemical Engineering, The MOE Key Laboratory of Spectrochemical Analysis and Instrumentation, State Key Laboratory of Physical Chemistry of Solid Surfaces, Xiamen University, Fujian Province 361005, China.
ACS Bio Med Chem Au. 2023 Dec 11;4(1):68-76. doi: 10.1021/acsbiomedchemau.3c00060. eCollection 2024 Feb 21.
Many cell-surface receptors are promising targets for chemical synthesis because of their critical roles in disease development. This synthetic approach enables investigations by racemic protein crystallography and ligand discovery by mirror-image methodologies. However, due to their complex nature, the chemical synthesis of a receptor can be a significant challenge. Here, we describe the chemical synthesis and folding of a central, cysteine-rich domain of the cell-surface receptor tumor necrosis factor 1 which is integral to binding of the cytokine TNF-α, namely, TNFR-1 CRD2. Racemic protein crystallography at 1.4 Å confirmed that the native binding conformation was preserved, and TNFR-1 CRD2 maintained its capacity to bind to TNF-α ( ≈ 7 nM). Encouraged by this discovery, we carried out mirror-image phage display using the enantiomeric receptor mimic and identified a d-peptide ligand for TNFR-1 CRD2 ( = 1 μM). This work demonstrated that cysteine-rich domains, including the central domains, can be chemically synthesized and used as mimics for investigations.
由于许多细胞表面受体在疾病发展中起着关键作用,因此它们是化学合成的有前景的靶点。这种合成方法能够通过外消旋蛋白质晶体学进行研究,并通过镜像方法发现配体。然而,由于其性质复杂,受体的化学合成可能是一项重大挑战。在此,我们描述了细胞表面受体肿瘤坏死因子1的一个富含半胱氨酸的中央结构域的化学合成和折叠,该结构域对于细胞因子TNF-α的结合至关重要,即TNFR-1 CRD2。1.4 Å分辨率的外消旋蛋白质晶体学证实了天然结合构象得以保留,并且TNFR-1 CRD2保持了其与TNF-α结合的能力(≈7 nM)。受这一发现的鼓舞,我们使用对映体受体模拟物进行了镜像噬菌体展示,并鉴定出一种针对TNFR-1 CRD2的d-肽配体( = 1 μM)。这项工作表明,包括中央结构域在内的富含半胱氨酸的结构域可以进行化学合成,并用作研究的模拟物。