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Characterization of Cell Membrane Extensions and Studying Their Roles in Cancer Cell Adhesion Dynamics
Published on: March 26, 2018
CD44 in cancer progression: adhesion, migration and growth regulation
1Department of Tumor Progression and Immune Defense, German Cancer Research Center, D-69120 Heidelberg, Germany.
Abstract:
It is well established that the large array of functions that a tumour cell has to fulfil to settle as a metastasis in a distant organ requires cooperative activities between the tumour and the surrounding tissue and that several classes of molecules are involved, such as cell-cell and cell-matrix adhesion molecules and matrix degrading enzymes, to name only a few. Furthermore, metastasis formation requires concerted activities between tumour cells and surrounding cells as well as matrix elements and possibly concerted activities between individual molecules of the tumour cell itself. Adhesion molecules have originally been thought to be essential for the formation of multicellular organisms and to tether cells to the extracellular matrix or to neighbouring cells. CD44 transmembrane glycoproteins belong to the families of adhesion molecules and have originally been described to mediate lymphocyte homing to peripheral lymphoid tissues. It was soon recognized that the molecules, under selective conditions, may suffice to initiate metastatic spread of tumour cells. The question remained as to how a single adhesion molecule can fulfil that task. This review outlines that adhesion is by no means a passive task. Rather, ligand binding, as exemplified for CD44 and other similar adhesion molecules, initiates a cascade of events that can be started by adherence to the extracellular matrix. This leads to activation of the molecule itself, binding to additional ligands, such as growth factors and matrix degrading enzymes, complex formation with additional transmembrane molecules and association with cytoskeletal elements and signal transducing molecules. Thus, through the interplay of CD44 with its ligands and associating molecules CD44 modulates adhesiveness, motility, matrix degradation, proliferation and cell survival, features that together may well allow a tumour cell to proceed through all steps of the metastatic cascade.
Insights
Metastasis formation involves complex interactions between tumor cells and their environment. The adhesion molecule CD44 plays a crucial role, initiating signaling cascades that promote tumor cell survival and spread.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Metastasis requires tumor cells to interact with surrounding tissues, involving various molecules like adhesion molecules and matrix-degrading enzymes.
- CD44 glycoproteins are adhesion molecules initially identified for lymphocyte homing, but later recognized for their role in tumor cell metastasis.
Purpose of the Study:
- To explore how a single adhesion molecule, CD44, can facilitate tumor cell metastasis.
- To elucidate the mechanisms by which CD44 contributes to the metastatic cascade.
Main Methods:
- Review of existing literature on CD44 function in cancer metastasis.
- Analysis of molecular interactions and signaling pathways involving CD44.
Main Results:
- Adhesion is an active process initiated by CD44 ligand binding, triggering intracellular signaling cascades.
- CD44 interacts with growth factors, matrix-degrading enzymes, other transmembrane molecules, and the cytoskeleton.
- These interactions modulate tumor cell adhesiveness, motility, matrix degradation, proliferation, and survival.
Conclusions:
- CD44 actively participates in multiple steps of the metastatic cascade through complex molecular interactions.
- Understanding CD44's role provides insights into potential therapeutic targets for inhibiting cancer metastasis.
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