Histochemistry, Cytochemistry and Epigenetics
Author:
Affiliation:
1. Department of Molecular Pathology, Ehime University Graduate School of Medicine
2. Division of Diagnostic Pathology, Ehime University Hospital
Publisher
Japan Society of Histochemistry & Cytochemistry
Subject
Cell Biology,Histology,Physiology,Biochemistry,Pathology and Forensic Medicine
Link
https://www.jstage.jst.go.jp/article/ahc/55/1/55_21-00095/_pdf
Reference47 articles.
1. 1 Amary, F., Berisha, F., Ye, H., Gupta, M., Gutteridge, A., Baumhoer, D., et al. (2017) H3F3A (Histone 3.3) G34W Immunohistochemistry: A Reliable Marker Defining Benign and Malignant Giant Cell Tumor of Bone. Am. J. Surg. Pathol. 41; 1059–1068.
2. 2 Armache, A., Yang, S., Martinez de Paz, A., Robbins, L. E., Durmaz, C., Cheong, J. Q., et al. (2020) Histone H3.3 phosphorylation amplifies stimulation-induced transcription. Nature 583; 852–857.
3. 3 Behjati, S., Tarpey, P. S., Presneau, N., Scheipl, S., Pillay, N., Van Loo, P., et al. (2013) Distinct H3F3A and H3F3B driver mutations define chondroblastoma and giant cell tumor of bone. Nat. Genet. 45; 1479–1482.
4. 4 Chan, K. M., Fang, D., Gan, H., Hashizume, R., Yu, C., Schroeder, M., et al. (2013) The histone H3.3K27M mutation in pediatric glioma reprograms H3K27 methylation and gene expression. Genes Dev. 27; 985–990.
5. 5 Dupont, C. A., Riegel, K., Pompaiah, M., Juhl, H. and Rajalingam, K. (2021) Druggable genome and precision medicine in cancer: current challenges. FEBS J. 288; 6142–6158.
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