4.8 Article

The ALFA-tag is a highly versatile tool for nanobody-based bioscience applications

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NATURE COMMUNICATIONS
卷 10, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-12301-7

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资金

  1. DFG through Cluster of Excellence Nanoscale Microscopy and Molecular Physiology of the Brain (CNMPB)
  2. Swedish Research Council [2014-5667]
  3. Swedish Cancer Society
  4. DFG through the Graduate School of Quantitative Biosciences Munich (QBM)
  5. DFG through the Emmy Noether Program [DFG JU 2957/1-1]
  6. ERC Starting Grant (MolMap) [680241]
  7. Max Planck Society
  8. Center for Nanoscience (CeNS)
  9. DFG [SFB 1032]
  10. European Research Council (ERC) [680241] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

Specialized epitope tags are widely used for detecting, manipulating or purifying proteins, but often their versatility is limited. Here, we introduce the ALFA-tag, a rationally designed epitope tag that serves a remarkably broad spectrum of applications in life sciences while outperforming established tags like the HA-, FLAG (R)- or myc-tag. The ALFA-tag forms a small and stable a-helix that is functional irrespective of its position on the target protein in prokaryotic and eukaryotic hosts. We characterize a nanobody (NbALFA) binding ALFA-tagged proteins from native or fixed specimen with low picomolar affinity. It is ideally suited for super-resolution microscopy, immunoprecipitations and Western blotting, and also allows in vivo detection of proteins. We show the crystal structure of the complex that enabled us to design a nanobody mutant (NbALFA(PE)) that permits efficient one-step purifications of native ALFA-tagged proteins, complexes and even entire living cells using peptide elution under physiological conditions.

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