Department of Chemistry, University of Hawaii at Manoa, Honolulu, HI, USA.
Department of Chemistry, University of Hawaii at Manoa, Honolulu, HI, USA.
Trends Biochem Sci. 2021 Jun;46(6):461-471. doi: 10.1016/j.tibs.2020.12.004. Epub 2021 Jan 5.
The first entangled protein was observed about 30 years ago, resulting in an increased interest for uncovering the biological functions and biophysical properties of these complex topologies. Recently, the Pierced Lasso Topology (PLT) was discovered in which a covalent bond forms an intramolecular loop, leaving one or both termini free to pierce the loop. This topology is related to knots and other entanglements. PLTs exist in many well-researched systems where the PLTs have previously been unnoticed. PLTs represents 18% of all disulfide containing proteins across all kingdoms of life. In this review, we investigate the biological implications of this specific topology in which the PLT-forming disulfide may act as a molecular switch for protein function and consequently human health.
大约 30 年前观察到了第一个缠结蛋白,这导致人们对揭示这些复杂拓扑结构的生物学功能和生物物理特性产生了更大的兴趣。最近,发现了穿孔套索拓扑(PLT),其中共价键形成分子内环,使一个或两个末端可以自由刺穿环。这种拓扑结构与结和其他缠结有关。PLT 存在于许多研究充分的系统中,其中 PLT 以前未被注意到。PLT 占所有生命王国中所有含二硫键蛋白质的 18%。在这篇综述中,我们研究了这种特殊拓扑结构的生物学意义,其中形成 PLT 的二硫键可能作为蛋白质功能的分子开关,从而影响人类健康。