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.

Biology Direct
|December 8, 2025
PubMed

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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