1.Targeted therapy: tailoring cancer treatment.
Chinese Journal of Cancer 2013;32(7):363-364
Targeted therapies include small-molecule inhibitors and monoclonal antibodies, have made treatment more tumor-specific and less toxic, and have opened new possibilities for tailoring cancer treatment. Nevertheless, there remain several challenges to targeted therapies, including molecular identification, drug resistance, and exploring reliable biomarkers. Here, we present several selected signaling pathways and molecular targets involved in human cancers including Aurora kinases, PI3K/mTOR signaling, FOXO-FOXM1 axis, and MDM2/MDM4-p53 interaction. Understanding the molecular mechanisms for tumorigenesis and development of drug resistance will provide new insights into drug discovery and design of therapeutic strategies for targeted therapies.
Aurora Kinases
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metabolism
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Drug Resistance, Neoplasm
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Forkhead Box Protein M1
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Forkhead Box Protein O3
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Forkhead Transcription Factors
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metabolism
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Humans
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Molecular Targeted Therapy
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Neoplasms
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metabolism
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therapy
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Nuclear Proteins
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metabolism
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Phosphatidylinositol 3-Kinases
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metabolism
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Proto-Oncogene Proteins
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metabolism
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Proto-Oncogene Proteins c-mdm2
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metabolism
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Signal Transduction
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TOR Serine-Threonine Kinases
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metabolism
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Tumor Suppressor Protein p53
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metabolism
2.Fine-tuning cell organelle dynamics during mitosis by small GTPases.
Zijian ZHANG ; Wei ZHANG ; Quentin LIU
Frontiers of Medicine 2022;16(3):339-357
During mitosis, the allocation of genetic material concurs with organelle transformation and distribution. The coordination of genetic material inheritance with organelle dynamics directs accurate mitotic progression, cell fate determination, and organismal homeostasis. Small GTPases belonging to the Ras superfamily regulate various cell organelles during division. Being the key regulators of membrane dynamics, the dysregulation of small GTPases is widely associated with cell organelle disruption in neoplastic and non-neoplastic diseases, such as cancer and Alzheimer's disease. Recent discoveries shed light on the molecular properties of small GTPases as sophisticated modulators of a remarkably complex and perfect adaptors for rapid structure reformation. This review collects current knowledge on small GTPases in the regulation of cell organelles during mitosis and highlights the mediator role of small GTPase in transducing cell cycle signaling to organelle dynamics during mitosis.
Humans
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Mitosis
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Monomeric GTP-Binding Proteins
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Neoplasms
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Organelles/physiology*
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Signal Transduction
4.The suppression of cervical cancer ferroptosis by macrophages: The attenuation of ALOX15 in cancer cells by macrophages-derived exosomes.
Yanlin LUO ; Yibing CHEN ; Huan JIN ; Benxin HOU ; Hongsheng LI ; Xiang LI ; Lingfeng LIU ; Yuan ZHOU ; Yonghua LI ; Yong Sang SONG ; Quentin LIU ; Zhengzhi ZOU
Acta Pharmaceutica Sinica B 2023;13(6):2645-2662
Induction of cancer cell ferroptosis has been proposed as a potential treatment in several cancer types. Tumor-associated macrophages (TAMs) play a key role in promoting tumor malignant progression and therapy resistance. However, the roles and mechanisms of TAMs in regulating tumor ferroptosis is still unexplored and remains enigmatic. This study shows ferroptosis inducers has shown therapeutic outcomes in cervical cancer in vitro and in vivo. TAMs have been found to suppress cervical cancer cells ferroptosis. Mechanistically, macrophage-derived miRNA-660-5p packaged into exosomes are transported into cancer cells. In cancer cells, miRNA-660-5p attenuates ALOX15 expression to inhibit ferroptosis. Moreover, the upregulation of miRNA-660-5p in macrophages depends on autocrine IL4/IL13-activated STAT6 pathway. Importantly, in clinical cervical cancer cases, ALOX15 is negatively associated with macrophages infiltration, which also raises the possibility that macrophages reduce ALOX15 levels in cervical cancer. Moreover, both univariate and multivariate Cox analyses show ALOX15 expression is independent prognostic factor and positively associated with good prognosis in cervical cancer. Altogether, this study reveals the potential utility of targeting TAMs in ferroptosis-based treatment and ALOX15 as prognosis indicators for cervical cancer.