Chakravarty Devlina, Porter Lauren L
National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, MD 20894.
Biochemistry and Biophysics Center, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD, 20892.
ArXiv. 2025 Jul 14:arXiv:2507.10839v1.
Globular proteins are expected to assume folds with fixed secondary structures, α-helices and β-sheets. Fold-switching proteins challenge this expectation by remodeling their secondary and/or tertiary structures in response to cellular stimuli. Though these shapeshifting proteins were once thought to be haphazard evolutionary byproducts with little intrinsic biological relevance, recent work has shown that evolution has selected for their dual-folding behavior, which plays critical roles in biological processes across all kingdoms of life. The widening scope of fold switching draws attention to the ways it challenges conventional wisdom, raising fundamental unanswered questions about protein structure, biophysics, and evolution. Here we discuss the progress being made to answer these questions and suggest future directions for the field.
球状蛋白预计会呈现出具有固定二级结构(α螺旋和β折叠)的折叠形式。折叠转换蛋白通过响应细胞刺激重塑其二级和/或三级结构,对这一预期提出了挑战。尽管这些形状变化的蛋白曾被认为是随意的进化副产物,几乎没有内在生物学相关性,但最近的研究表明,进化选择了它们的双重折叠行为,这种行为在所有生命王国的生物过程中都起着关键作用。折叠转换范围不断扩大,使其对传统观念的挑战方式受到关注,引发了关于蛋白质结构、生物物理学和进化的基本未解决问题。在这里,我们讨论在回答这些问题方面所取得的进展,并为该领域提出未来的方向。