Department of Dermatology, School of Medicine, University of Colorado Anschutz Medical Campus, Aurora, CO, USA.
Department of Biochemistry and Molecular Genetics, School of Medicine, University of Colorado Anschutz Medical Campus, Aurora, CO, USA.
J Struct Biol. 2022 Dec;214(4):107914. doi: 10.1016/j.jsb.2022.107914. Epub 2022 Oct 29.
The sterile alpha motif (SAM) domains are among the most versatile protein domains in biology, and the variety of the oligomerization states contribute to their diverse roles in many diseases. A better understanding of the structure and dynamics of various SAM domains will provide a scientific basis for drug development targeting them. Here, we used SEC-MALS, HPLC, NMR, and other biophysical techniques to characterize the structural features and dynamics of the SAM1 domain in SASH1. SASH1 is a scaffold protein belonging to the same family as SASH3. Unlike the dimerization seen in SASH3's SAM domain, our SEC-MALS and SE-HPLC showed that SAM1 exists primarily as a less compact monomer with a minor oligomer. NMR assignment, relaxation, and exchange experiments revealed the presence of both a disordered monomer and a more structured oligomer with multiple timescale exchange regimes in solution. Mutagenesis and SE-HPLC showed that D663A/T664K substitutions in SAM1 increased its oligomerization. In sum, this study is the first to characterize a disordered structure for a SAM domain, provides additional evidence and framework for the diversity of SAM domains, and identifies a region in SAM1 as a potential starting point to further characterize the structural mechanism of oligomerization of the domain.
sterile alpha motif (SAM) 结构域是生物学中用途最广泛的蛋白结构域之一,其寡聚化状态的多样性使其在许多疾病中发挥了多种作用。更好地了解各种 SAM 结构域的结构和动力学特性,将为针对它们的药物开发提供科学依据。在这里,我们使用 SEC-MALS、HPLC、NMR 和其他生物物理技术来表征 SASH1 中的 SAM1 结构域的结构特征和动力学特性。SASH1 是一种支架蛋白,与 SASH3 属于同一家族。与 SASH3 的 SAM 结构域中观察到的二聚化不同,我们的 SEC-MALS 和 SE-HPLC 表明,SAM1 主要以非紧凑的单体形式存在,只有少量的寡聚体。NMR 分配、弛豫和交换实验表明,在溶液中存在无序单体和更具结构的寡聚体,具有多个时间尺度的交换状态。突变和 SE-HPLC 表明,SAM1 中的 D663A/T664K 取代增加了其寡聚化。总之,这项研究首次对 SAM 结构域的无序结构进行了表征,为 SAM 结构域的多样性提供了额外的证据和框架,并确定了 SAM1 中的一个区域作为进一步表征该结构域寡聚化结构机制的潜在起点。