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KIF4A in disease pathogenesis and therapeutics: from molecular mechanisms to clinical translation
Yi Liu1, Yunhua Li1, Chunrong Tang1
1Department of Radiology, West China Hospital Sichuan University Jintang Hospital, Jintang First People's Hospital, Chengdu, Sichuan, 610400, China.
Abstract:
Kinesin family member 4 A (KIF4A) is a multifunctional motor protein essential for chromosome condensation, spindle dynamics, and cytokinesis. Beyond its classical mitotic functions, emerging evidence positions KIF4A as a central regulator of tumorigenesis, therapy resistance, metabolic reprogramming, and immune modulation across diverse cancer types. However, no comprehensive review has integrated its molecular mechanisms with its roles in both oncological and non-oncological diseases, nor clarified its context-dependent behavior, including paradoxical tumor-suppressive effects in cervical cancer. In this review, we synthesize current advances spanning structural biology, transcriptional and post-translational regulation, and pathway-level interactions involving PI3K/AKT, TGF-β/Smad, Hippo-YAP, metabolic remodeling, and DNA damage response networks. We summarize KIF4A's expression and functions across more than 30 malignant tumors and multiple non-neoplastic conditions-including neurodevelopmental disorders, autoimmune diseases, viral infections, fibrotic diseases, and congenital anomalies-highlighting shared molecular themes and disease-specific distinctions. A notable finding is KIF4A's context dependency: while generally oncogenic, high KIF4A expression in cervical cancer correlates with improved survival, suggesting HPV-specific transcriptional rewiring, altered phosphorylation states, or compensatory genome stabilization as potential mechanisms.We further evaluate the translational implications of KIF4A as a biomarker for diagnosis, prognosis, and treatment response, and we critically examine therapeutic strategies targeting KIF4A-ranging from small-molecule inhibitors and gene-silencing approaches to miRNA therapeutics, exosome-based delivery systems, and neoantigen-directed immunotherapy. Finally, we outline major challenges to clinical translation, including its essential roles in mitosis and neuronal integrity, the need for tumor-selective delivery platforms, and incomplete understanding of its tissue-specific functions. Collectively, this review provides a unified mechanistic and translational framework for understanding KIF4A across human diseases, identifies key knowledge gaps, and proposes future research directions to enable safe and effective targeting of this biologically indispensable protein.
Insights
Kinesin family member 4A (KIF4A) is a motor protein involved in cell division and cancer. This review explores KIF4A
Area of Science:
- * Molecular biology and cell dynamics.
- * Cancer biology and disease mechanisms.
- * Translational medicine and therapeutic development.
Background:
- * Kinesin family member 4A (KIF4A) is a motor protein critical for mitosis and cellular processes.
- * Emerging evidence implicates KIF4A in tumorigenesis, therapy resistance, and immune modulation.
- * KIF4A exhibits context-dependent roles, including paradoxical tumor-suppressive effects in cervical cancer.
Purpose of the Study:
- * To provide a comprehensive review of KIF4A's molecular mechanisms and roles in diverse diseases.
- * To integrate KIF4A's functions in both oncological and non-oncological conditions.
- * To clarify KIF4A's context-dependent behavior and translational implications.
Main Methods:
- * Synthesis of current advances in structural biology, transcriptional, and post-translational regulation.
- * Analysis of KIF4A's pathway interactions (PI3K/AKT, TGF-β/Smad, Hippo-YAP, metabolism, DNA damage response).
- * Summary of KIF4A expression and functions across >30 tumors and non-neoplastic conditions.
Main Results:
- * KIF4A generally promotes tumorigenesis but acts suppressively in cervical cancer, potentially due to HPV-specific alterations.
- * KIF4A is implicated in neurodevelopmental disorders, autoimmune diseases, viral infections, and fibrotic conditions.
- * KIF4A serves as a potential biomarker for cancer diagnosis, prognosis, and treatment response.
Conclusions:
- * KIF4A is a versatile protein with critical, context-dependent roles across a spectrum of human diseases.
- * Therapeutic strategies targeting KIF4A are being developed, but challenges remain regarding selectivity and essential physiological functions.
- * Further research is needed to fully elucidate KIF4A's tissue-specific functions and enable safe, effective clinical translation.
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