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手性在高分子畴中的传递。

Chirality transmission in macromolecular domains.

机构信息

Department of Chemistry and Biochemistry, Kent State University, Kent, OH, 44242, USA.

Biomolecular Nanoscale Engineering Center, Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, 5230, Odense M, Denmark.

出版信息

Nat Commun. 2022 Jan 10;13(1):76. doi: 10.1038/s41467-021-27708-4.

Abstract

Chiral communications exist in secondary structures of foldamers and copolymers via a network of noncovalent interactions within effective intermolecular force (IMF) range. It is not known whether long-range chiral communication exists between macromolecular tertiary structures such as peptide coiled-coils beyond the IMF distance. Harnessing the high sensitivity of single-molecule force spectroscopy, we investigate the chiral interaction between covalently linked DNA duplexes and peptide coiled-coils by evaluating the binding of a diastereomeric pair of three DNA-peptide conjugates. We find that right-handed DNA triple helices well accommodate peptide triple coiled-coils of the same handedness, but not with the left-handed coiled-coil stereoisomers. This chiral communication is effective in a range (<4.5 nm) far beyond canonical IMF distance. Small-angle X-ray scattering and molecular dynamics simulation indicate that the interdomain linkers are tightly packed via hydrophobic interactions, which likely sustains the chirality transmission between DNA and peptide domains. Our findings establish that long-range chiral transmission occurs in tertiary macromolecular domains, explaining the presence of homochiral pairing of superhelices in proteins.

摘要

手性通讯存在于折叠聚合物的二级结构中,通过有效分子间力 (IMF) 范围内的非共价相互作用网络。目前尚不清楚手性信息是否存在于肽螺旋等大分子三级结构之间,超过了 IMF 距离。利用单分子力谱的高灵敏度,我们通过评估一对非对映异构体的三个 DNA-肽缀合物的结合,研究了共价连接的 DNA 双链体和肽螺旋之间的手性相互作用。我们发现右手 DNA 三螺旋很好地适应了相同手性的肽三重螺旋,但不能与左手螺旋的立体异构体结合。这种手性通讯在远超过典型 IMF 距离的范围内是有效的(<4.5nm)。小角 X 射线散射和分子动力学模拟表明,结构域间的连接通过疏水相互作用紧密堆积,这可能维持了 DNA 和肽结构域之间的手性传递。我们的发现表明,长程手性传递发生在三级大分子结构域中,解释了蛋白质中超螺旋中同源手性配对的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/880a/8748818/5b59c138081f/41467_2021_27708_Fig1_HTML.jpg

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