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通过埋藏极性基团调控实现二聚卷曲螺旋中的正交识别

Orthogonal recognition in dimeric coiled coils via buried polar-group modulation.

作者信息

Diss Maria L, Kennan Alan J

机构信息

Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523, USA.

出版信息

J Am Chem Soc. 2008 Jan 30;130(4):1321-7. doi: 10.1021/ja076265w. Epub 2008 Jan 3.

Abstract

We describe the design and exploration of new buried polar groups to control coiled-coil dimerization. Employing our recently described method for on-resin guanidinylation, we have prepared coiled-coil peptides with a single core guanidine, spaced from the backbone by 1-3 methylene groups. Heterodimeric mixtures of these sequences with guanidine, amide, and carboxylic acid binding partners form a large number of reasonably stable coiled coils (T(m) > or = 60 degrees C). A detailed stability trend examination reveals that asparagine/acid pairs are sharply sensitive to acid residue chain length (Asn/Asp much worse than Asn/Glu), while guanidine/acid pairs are largely insensitive. This has been exploited to create orthogonal recognition pairs which establish the capacity to form two distinct heterodimeric coiled coils by simple mixing of four different peptides. One dimer has buried core asparagines, while the other pairs aspartic acid with any of three guanidinylated side chains. Specificity of this behavior is underscored by failure of glutamic acid substituted sequences to perform accordingly. The successful alternate pairs are further characterized by various biophysical methods (circular dichroism, ultracentrifugation, thermal and chemical denaturation, affinity tags).

摘要

我们描述了用于控制卷曲螺旋二聚化的新型埋藏极性基团的设计与探索。利用我们最近描述的树脂上胍基化方法,我们制备了具有单个核心胍基的卷曲螺旋肽,该胍基与主链间隔1 - 3个亚甲基。这些序列与胍基、酰胺和羧酸结合伙伴的异二聚体混合物形成了大量相当稳定的卷曲螺旋(T(m)≥60℃)。详细的稳定性趋势研究表明,天冬酰胺/酸对敏锐地敏感于酸性残基链长度(天冬酰胺/天冬氨酸比天冬酰胺/谷氨酸差得多),而胍基/酸对在很大程度上不敏感。这已被用于创建正交识别对,通过简单混合四种不同的肽来建立形成两种不同异二聚体卷曲螺旋的能力。一种二聚体具有埋藏的核心天冬酰胺,而另一种将天冬氨酸与三种胍基化侧链中的任何一种配对。谷氨酸取代序列未能相应表现突出了这种行为的特异性。成功的交替对通过各种生物物理方法(圆二色性、超速离心、热变性和化学变性、亲和标签)进一步表征。

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