Ikaros, which is encoded by the Ikaros family zinc finger 1 (IKZF1) gene, is a zinc finger transcription factor. We have previously generated K5-Ikzf1-EGFP transgenic mice (Ikzf1 Tg) by introducing the IKZF1 isoform into epithelial cells expressing keratin 5, which develop patchy alopecia. However, there has been no detailed in vivo investigation of the function of IKZF1 in alopecia or of Ikaros expression in hair follicles of alopecia patients. Our aim was to investigate whether IKZF1 overexpression is involved in the pathogenesis of alopecia areata (AA) using Ikzf1 Tg and to examine Ikaros expression in human scalp skin. We grossly and histologically examined the alopecic lesions of Ikzf1 Tg and the skin of wild-type (WT) mice and the associated mRNA expression of inflammatory mediators. We also examined Ikaros' expression in human scalp skin. Grossly and histologically, we found that the Ikzf1 Tg developed AA-like lesions. Immunohistochemically, the hair follicles of the Ikzf1 Tg expressed high levels of the NKG2D ligand H60 and contained infiltrating CD8NKG2D T cells. Interleukin 15, tumour necrosis factor-α, CXC chemokine ligand (Cxcl)1, Cxcl10, Cxcl11, signal transducer and activator of transcription (STAT)1, STAT3, Janus kinase (JAK)1 and JAK3 mRNA expression were significantly higher in the alopecic lesions of the Ikzf1 Tg than in the WT mice. Ikzf1 Tg given corticosteroid injections exhibited hair regrowth. Immunohistochemical analysis of scalp hair follicles showed that Ikaros was more highly expressed in AA patients than in non-AA controls. Our study suggests that IKZF1 and Ikaros are involved in the pathogenesis of AA.
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http://dx.doi.org/10.1111/exd.70074 | DOI Listing |
Exp Dermatol
March 2025
Department of Dermatology, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kyoto, Japan.
Ikaros, which is encoded by the Ikaros family zinc finger 1 (IKZF1) gene, is a zinc finger transcription factor. We have previously generated K5-Ikzf1-EGFP transgenic mice (Ikzf1 Tg) by introducing the IKZF1 isoform into epithelial cells expressing keratin 5, which develop patchy alopecia. However, there has been no detailed in vivo investigation of the function of IKZF1 in alopecia or of Ikaros expression in hair follicles of alopecia patients.
View Article and Find Full Text PDFBackground: The incidence of colorectal cancer (CRC) is rapidly increasing, and early detection plays a crucial role in improving the prognosis and survival rates of patients. This study aimed to assess the diagnostic ability of combined SDC2-KCNQ5-IKZF1 methylation levels in plasma for CRC detection.
Methods: A total of 92 patients were recruited from the Department of General Surgery at the Second Hospital of Hebei Medical University, including 56 CRC patients, 22 polyp and adenoma patients, and 14 healthy controls.
J Med Chem
March 2025
Department of Chemical and Physical Sciences, University of Toronto Mississauga, 3359 Mississauga Road, Mississauga, Ontario L5L 1C6, Canada.
Herein, we report a potent HDAC6 PROTAC, TO-1187, which selectively degrades HDAC6 and demonstrates efficacy. The design of TO-1187 was achieved by linking our previously reported HDAC6 inhibitor, TO-317, to the cereblon (CRBN) E3 ligase ligand, pomalidomide. TO-1187 achieved monoselective HDAC6 degradation in human multiple myeloma cells, MM.
View Article and Find Full Text PDFAutoimmunity
December 2025
Department of Rheumatology, Lanzhou University Second Hospital, Lanzhou, China.
Lactylation is widely involved in cellular processes and is pivotal in inflammation and immune regulation. However, the expression and clinical significance of lactylation in rheumatoid arthritis (RA) remain unclear. This study aimed to determine the role of lactylation in RA and its association with immune cell infiltration.
View Article and Find Full Text PDFBr J Haematol
March 2025
Medizinische Klinik und Poliklinik I, Universitätsklinikum Carl Gustav Carus, Dresden, Germany.
IKZF1 mutations are recurrent alterations in acute myeloid leukaemia (AML), and hotspot point mutation, N159S, has recently been associated with unique gene expression and adverse risk. To better understand the molecular and clinical associations of IKZF1 N159S-mutated AML, we performed a pooled analysis of 4136 AML patients. IKZF1 N159 mutations were found in 39 patients (0.
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