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Updated: Apr 26, 2026

RhoC GTPase Activation Assay
Published on: August 22, 2010
Rho GTPase Rac1: molecular switch within the galectin network and for N-glycan α2,6-sialylation/O-glycan core 1
S André1, T Singh1, J C Lacal2
1Ludwig-Maximilians-University Munich, Faculty of Veterinary Medicine, Institute of Physiological Chemistry, Munich, Germany.
Abstract:
The Rho GTPase Rac1 is a multifunctional protein working through different effector pathways. The emerging physiological significance of glycanlectin recognition gives reason to testing the possibility for an influence of modulation of Rac1 expression on these molecular aspects. Using human colon adenocarcinoma (SW620) cells genetically engineered for its up- and down-regulation (Rac1+ and Rac1- cells) along with wild-type and mock-transfected control cells, the questions are addressed whether the presence of adhesion/growth-regulatory galectins and distinct aspects of cell surface glycosylation are affected. Proceeding from RT-PCR data to Western blotting after two-dimensional gel electrophoresis and flow cytofluorimetry with non-crossreactive antibodies against six members of this lectin family (i.e. galectins-1, -3, -4, -7, -8 and -9), a reduced extent of the presence of galectins-1, -7 and -9 was revealed in the case of Rac1 cells. Application of these six galectins as probes to determination of cell reactivity for human lectins yielded relative increases in surface labelling of Rac1- cells with galectins-1, -3 and -7. Examining distinct aspects of cell surface glycosylation with a panel of 14 plant/fungal lectins disclosed a decrease in α2,6-sialylation of N-glycans and an increase in PNA-reactive sites (i.e. non-sialylated core 1 O-glycans), two alterations known to favour reactivity for galectins-1 and -3. Thus, manipulation of Rac1 expression selectively affects the expression pattern within the galectin network at the level of proteins and distinct aspects of cell surface glycosylation.
Insights
Modulating Rac1 expression in colon cancer cells alters galectin presence and cell surface glycosylation. This impacts cell adhesion and growth regulation, revealing Rac1
Area of Science:
- Cell Biology
- Molecular Biology
- Glycobiology
Background:
- The Rho GTPase Rac1 is a key regulator of cellular processes.
- Glycan-lectin interactions are increasingly recognized for their physiological importance.
- Understanding Rac1's influence on these interactions is crucial for cell regulation.
Purpose of the Study:
- To investigate the effect of Rac1 expression modulation on galectin presence.
- To determine the impact of Rac1 manipulation on cell surface glycosylation.
- To explore the relationship between Rac1, galectins, and glycosylation in colon cancer cells.
Main Methods:
- Genetic engineering of human colon adenocarcinoma (SW620) cells for Rac1 up- and down-regulation.
- RT-PCR, Western blotting, and 2D gel electrophoresis to analyze galectin expression.
- Flow cytofluorimetry with specific antibodies and lectin probes to assess galectin presence and cell surface glycosylation.
Main Results:
- Rac1 down-regulation (Rac1- cells) reduced the expression of galectins-1, -7, and -9.
- Rac1- cells showed increased surface reactivity with galectins-1, -3, and -7.
- Decreased α2,6-sialylation of N-glycans and increased PNA-reactive sites (O-glycans) were observed in Rac1- cells.
Conclusions:
- Rac1 expression levels significantly influence the galectin network at both protein and glycosylation levels.
- Alterations in cell surface glycosylation in Rac1- cells favor reactivity with specific galectins.
- Rac1 modulation selectively impacts molecular aspects of glycan-lectin recognition in colon cancer cells.
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