ANXA4 Activates JAK-STAT3 Signaling by Interacting with ANXA1 in Basal-Like Breast Cancer
DNA AND CELL BIOLOGY
Authors: Li, Lei; Zhang, Rong; Liu, Ying; Zhang, Gong
Abstract
Annexin A4 (encoded by theANXA4gene) is a calcium ion (Ca2+)- and phospholipid-binding protein of the Annexin family. In this study, we checked the expression profile ofANXA4in basal-like breast cancer (BLBC) and its association with survival outcomes using pan-cancer data from The Cancer Genome Atlas (TCGA) and the Genotype-Tissue Expression (GTEx) project. Then, using MDA-MB-231 and MDA-MB-468 cells, we explored the functional role of ANXA4 in regulating a cancer-related signaling pathway and identified potential partners of ANXA4. The results showed that expression of totalANXA4and the two dominant ANXA4 protein-coding transcripts (ENST00000409920.5 and ENST00000394295.4) was consistently upregulated in tumor tissues compared with normal breast tissues. BLBC patients with highANXA4expression had significantly worse overall survival, progression-free survival, and disease-free survival than those with lowANXA4expression. ANXA4 could positively modulate cyclin D1 expression and G1/S progression in the two cell lines. Anin vivotumor model showed thatANXA4inhibition significantly slowed the growth of tumors derived from the two BLBC cell lines. ANXA4 could increase JAK1 expression and STAT3 phosphorylation (Y705). ANXA4 colocalized with ANXA1 in some MDA-MB-231 cells. A co-immunoprecipitation assay confirmed direct binding between ANXA4 and ANXA1. Knockdown ofANXA1reduced JAK1 expression and STAT3 phosphorylation and impaired ANXA4-induced upregulation of JAK1 and p-STAT3. In conclusion, this study revealed that aberrantANXA4upregulation is associated with poor survival in BLBC. ANXA4 could activate JAK-STAT3 signaling by elevating the expression of JAK1 and p-STAT3, which was mediated by direct interaction with ANXA1.
Positron emission tomography imaging of a novel Anxa1-targeted peptide(18)F-Al-NODA-Bn-p-SCN-GGGRDN-IF7 in A431 cancer mouse models
JOURNAL OF LABELLED COMPOUNDS & RADIOPHARMACEUTICALS
Authors: Chen, Fei; Xiao, Yichun; Shao, Kejing; Zhu, Bao; Jiang, Mengjun
Abstract
Annexin 1 (Anxa1) is a highly specific surface marker of tumor vasculature in the lung and prostate solid tumors. The IF7 peptide was modified with a hydrophilic linker, GGGRDN, and coupled with a new bifunctional chelating agent NODA-Bn-p-SCN. The resulting peptides (NODA-Bn-p-SCN-GGGRDN-IF7) were successfully labeled with (AlF)-F-18. The targeting characteristics of the radiolabeled peptides were evaluated in the Anxa1 positive A431 tumor model. Micro-positron emission tomography (micro-PET) imaging revealed that the A431 tumors were clearly visualized (5.74 +/- 1.13%ID/g, 3.92 +/- 0.78%ID/g and 1.30 +/- 0.43%ID/g at 0.5, 1, and 2 h post-injection, respectively). Anxa1 binding specificity was also demonstrated by reduced tumor uptake after co-injection with excessive unlabeled GGGRDN-IF7 peptide at 30, 60, and 120 min post-injection.F-18-Al-NODA-Bn-p-SCN-GGGRDN-IF7 might be a potential PET imaging agent for detecting Anxa1 levels in cancers due to the favorable characteristics such as convenient synthesis, specific Anxa1 targeting, and good tumor uptakes.