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Updated: Jan 20, 2026

Quantitative Localization of a Golgi Protein by Imaging Its Center of Fluorescence Mass
Published on: August 10, 2017
Selected Golgi-Localized Proteins and Carcinogenesis: What Do We Know?
Piotr Donizy1,2, Jakub Marczuk3
1Department of Pathomorphology and Oncological Cytology, Wroclaw Medical University, Wroclaw, Poland. piotrdonizy@wp.pl.
Abstract:
The role of the Golgi apparatus in carcinogenesis still remains unclear. A number of structural and functional cis-, medial-, and trans-Golgi proteins as well as a complexity of metabolic pathways which they mediate may indicate a central role of the Golgi apparatus in the development and progression of cancer. Pleiotropy of cellular function of the Golgi apparatus makes it a "metabolic heart" or a relay station of a cell, which combines multiple signaling pathways involved in carcinogenesis. Therefore, any damage to or structural abnormality of the Golgi apparatus, causing its fragmentation and/or biochemical dysregulation, results in an up- or downregulation of signaling pathways and may in turn promote tumor progression, as well as local nodal and distant metastases. Three alternative or parallel models of spatial and functional Golgi organization within tumor cells were proposed: (1) compacted Golgi structure, (2) normal Golgi structure with its increased activity, and (3) the Golgi fragmentation with ministacks formation. Regardless of the assumed model, the increased activity of oncogenesis initiators and promoters with inhibition of suppressor proteins results in an increased cell motility and migration, increased angiogenesis, significantly activated trafficking kinetics, proliferation, EMT induction, decreased susceptibility to apoptosis-inducing factors, and modulating immune response to tumor cell antigens. Eventually, this will lead to the increased metastatic potential of cancer cells and an increased risk of lymph node and distant metastases. This chapter provided an overview of the current state of knowledge of selected Golgi proteins, their role in cytophysiology as well as potential involvement in tumorigenesis.
Insights
The Golgi apparatus plays a key role in cancer development and metastasis. Its structural and functional changes promote tumor progression and the spread of cancer cells, highlighting its importance in carcinogenesis.
Area of Science:
- Cell Biology
- Cancer Biology
- Biochemistry
Background:
- The Golgi apparatus's function in cancer (carcinogenesis) is not fully understood.
- Its proteins and metabolic pathways suggest a central role in cancer development and progression.
- The Golgi apparatus acts as a cellular "metabolic heart" integrating signaling pathways crucial for carcinogenesis.
Purpose of the Study:
- To review the current knowledge on Golgi apparatus proteins and their functions.
- To explore the potential involvement of the Golgi apparatus in tumorigenesis.
- To understand how Golgi apparatus abnormalities contribute to cancer progression and metastasis.
Main Methods:
- Review of existing literature on Golgi apparatus proteins and cancer.
- Analysis of structural and functional aspects of Golgi apparatus in tumor cells.
- Examination of proposed models for Golgi organization in cancer cells.
Main Results:
- Golgi apparatus fragmentation or dysregulation can alter signaling pathways, promoting tumor progression.
- Three models of Golgi organization in tumor cells exist: compacted, hyperactive normal, or fragmented with ministacks.
- Altered Golgi function enhances cell motility, angiogenesis, proliferation, EMT, and immune evasion, increasing metastatic potential.
Conclusions:
- The Golgi apparatus is critically involved in cancer development, progression, and metastasis.
- Structural and functional Golgi abnormalities contribute to increased tumor aggressiveness and metastatic spread.
- Targeting Golgi apparatus pathways may offer new therapeutic strategies for cancer treatment.
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