Crotonylation

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Introduction

Crotonylation is a recently identified lysine acylation modification that was first recognized as a histone modification in 2011. This modification is characterized by the addition of a crotonyl group to lysine residues. Enriched in transcriptionally active chromatin, histone crotonylation regulates chromatin organization and gene expression. Growing evidence indicates that crotonylation participates in diverse biological processes, including cell differentiation, reproductive development, and cellular regulation. The identification of crotonylation provides new insights into the epigenetic mechanisms underlying gene expression and biological functions.

Products Solutions

Our crotonylation products provide reliable tools for the detection and enrichment of crotonylation‑modified proteins, supporting studies of protein crotonylation and its biological functions.

  • High‑sensitive detection
  • Broad reactivity across crotonylation‑modified proteins
  • Reliable immunoaffinity enrichment

Product List

Product TypeProduct NameCatalog No.
Rabbit pAbPan‑Crotonyllysine Rabbit pAbWT9005
Rabbit mAbPan‑Crotonyllysine Rabbit mAbWT9006
Mouse mAbPan‑Crotonyllysine Mouse mAbWT9170
MultiPTMCrotonyllysine MultiPTM Rabbit Monoclonal Antibody MixWT9006M
Agarose ConjugatedCrotonyllysine Specific Antibody Conjugated Agarose BeadsWT9161B

Research Areas

  • Reproductive biology
  • Cell differentiation
  • Chromatin organization
  • Gene transcription

References

  1. Tan M, Luo H, Lee S, et al. Identification of 67 histone marks and histone lysine crotonylation as a new type of histone modification. Cell. 2011;146(6):1016‑1028.
  2. Yuan S, Yan Y, Liang Y, et al. The Landscape and Regulation of Histone Crotonylation in Mammalian Gametes and Early Embryos. Adv Sci (Weinh). 2026;13(36):e75143.
  3. Wang YF, Wan YT, Qi QR, et al. Echs1‑mediated histone crotonylation facilitates zygotic genome activation and expression of repetitive elements in early mammalian embryos. Nat Commun. 2025;16(1):5630.
  4. Yuan S, Yan Y, Liang Y, et al. The Landscape and Regulation of Histone Crotonylation in Mammalian Gametes and Early Embryos. Adv Sci (Weinh). 2026;13(36):e75143.

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