The roles of STMN3 in various cancers

Jing-Jing Yang1, Li-Zhou Shi2, Jie Cheng3

  • 1Department of Gastroenterology, Kunshan First People's Hospital Affiliated to Jiangsu University, Kunshan, Jiangsu, China.

Science Progress
|May 2, 2026
PubMed

Insights

Stathmin-3 (STMN3) is a microtubule-destabilizing protein implicated in cancer. Aberrant STMN3 expression drives tumor initiation, progression, and metastasis, highlighting its potential as a therapeutic target in oncology.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Oncology

Background:

  • Stathmin-3 (STMN3) is a regulatory protein that destabilizes microtubules by promoting depolymerization.
  • STMN3 interacts with α/β heterodimers, influencing cell morphology and function.
  • Dysregulated STMN3 expression is linked to various diseases, particularly in oncology.

Purpose of the Study:

  • To review and analyze the roles and mechanisms of STMN3 in tumorigenesis.
  • To identify STMN3 as a potential therapeutic target for precision medicine in cancer treatment.

Main Methods:

  • Narrative review guided by the Scale for the Assessment of Narrative Review Articles (SANRA).
  • Literature search in PubMed and Web of Science using keywords: "STMN3", "SCLIP", "tumor", "cancer".
  • Screening of relevant studies based on content and data integrity, including bioinformatic and experimental data.

Main Results:

  • STMN3 is dysregulated in multiple cancer types, correlating with tumor initiation, progression, and metastasis.
  • STMN3 participates in diverse physiological and pathological processes and signaling pathways.
  • STMN3 exhibits potential as a multifunctional regulatory molecule in cancer development.

Conclusions:

  • STMN3 plays a significant role in tumorigenesis and cancer progression.
  • Targeting STMN3 may offer novel therapeutic strategies for cancer treatment.
  • Further research into STMN3 mechanisms can advance precision medicine approaches.

Related Concept Videos

Cancer Stem Cells and Tumor Maintenance02:40

Cancer Stem Cells and Tumor Maintenance

Early diagnosis and treatment can often cure cancer. However, even with treatment, residual cells called cancer stem cells (CSC) might remain, often causing tumor recurrence. These cancer stem cells possess the potential for self-renewal and multi-lineage differentiation and are often responsible for the therapeutic resistance displayed in most cancers.
Cancer stem cells are thought to originate from tissue-specific normal stem cells or progenitor cells. The normal stem cells usually reside in...
4.3K
Cancer Stem Cells and Tumor Maintenance02:40

Cancer Stem Cells and Tumor Maintenance

2.0K
mTOR Signaling and Cancer Progression03:03

mTOR Signaling and Cancer Progression

The mammalian target of rapamycin or mTOR protein was discovered in 1994 due to its direct interaction with rapamycin. The protein gets its name from a yeast homolog called TOR. The mTOR protein complex in mammalian cells plays a major role in balancing anabolic processes such as the synthesis of proteins, lipids, and nucleotides and catabolic processes, such as autophagy in response to environmental cues, such as availability of nutrients and growth factors.
The mTOR pathway or the...
3.6K
The Tumor Microenvironment02:17

The Tumor Microenvironment

Every normal cell or tissue is embedded in a complex local environment called stroma, consisting of different cell types, a basal membrane, and blood vessels. As normal cells mutate and develop into cancer cells, their local environment also changes to allow cancer progression. The tumor microenvironment (TME) consists of a complex cellular matrix of stromal cells and the developing tumor. The cross-talk between cancer cells and surrounding stromal cells is critical to disrupt normal tissue...
6.3K
Abnormal Proliferation02:23

Abnormal Proliferation

Under normal conditions, most adult cells remain in a non-proliferative state unless stimulated by internal or external factors to replace lost cells. Abnormal cell proliferation is a condition in which the cell's growth exceeds and is uncoordinated with normal cells. In such situations, cell division persists in the same excessive manner even after cessation of the stimuli, leading to persistent tumors. The tumor arises from the damaged cells that replicate to pass the damage to the...
4.0K
Destabilization of Microtubules01:45

Destabilization of Microtubules

The destabilization of microtubules can occur during different stages of the microtubule lifecycle, such as nucleation or elongation. It can take place at either end of the microtubule or in the microtubule lattices as a whole. The lifespan of individual microtubules within a cell varies according to the cell type and stage of the cell cycle. During interphase, the lifespan of the microtubule is about 30 minutes, while during cell division, it is about 15 minutes. In axonal microtubules of...
2.9K