Jäger Marcus, Nir Eyal, Weiss Shimon
Department of Chemistry and Biochemistry, UCLA, Charles E. Young Drive East, Los Angeles, CA 90095, USA.
Protein Sci. 2006 Mar;15(3):640-6. doi: 10.1110/ps.051851506. Epub 2006 Feb 1.
An often limiting factor for studying protein folding by single-molecule fluorescence resonance energy transfer (FRET) is the ability to site-specifically introduce a photostable organic FRET donor (D) and a complementary acceptor (A) into a polypeptide chain. Using alternating-laser excitation and chymotrypsin inhibitor 2 as a model, we show that chemical labeling of a unique cysteine, followed by enzymatic modification of a reactive glutamine in an N-terminally appended substrate sequence recognition tag for transglutaminase (TGase) affords stoichiometrically D-/A-labeled protein suitable for single-molecule FRET experiments. Thermodynamic data indicate that neither the presence of the TGase tag nor D/A labeling perturbs protein stability. As the N terminus in proteins is typically solvent accessible, a TGase tag can (in principle) be appended to any protein of interest by genetic engineering. Two-step chemical/enzymatic labeling may thus represent a simple, low-cost, and widely available strategy for D/A labeling of proteins for FRET-based single-molecule protein folding studies, even for non-protein-experts laboratories.
通过单分子荧光共振能量转移(FRET)研究蛋白质折叠时,一个常常具有限制作用的因素是能否将光稳定的有机FRET供体(D)和互补受体(A)位点特异性地引入多肽链中。以交替激光激发和胰凝乳蛋白酶抑制剂2作为模型,我们表明,对一个独特的半胱氨酸进行化学标记,然后对转谷氨酰胺酶(TGase)的N端附加底物序列识别标签中的一个反应性谷氨酰胺进行酶促修饰,可得到化学计量比的D/A标记蛋白质,适用于单分子FRET实验。热力学数据表明,TGase标签的存在和D/A标记均不会干扰蛋白质稳定性。由于蛋白质的N端通常可被溶剂接触,通过基因工程(原则上)可将TGase标签附加到任何感兴趣的蛋白质上。因此,两步化学/酶促标记可能代表一种简单、低成本且广泛适用的策略,用于基于FRET的单分子蛋白质折叠研究中的蛋白质D/A标记,即使对于非蛋白质专家实验室也是如此。