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Updated: May 23, 2026

Image-Based Methods to Study Membrane Trafficking Events in Stomatal Lineage Cells
Published on: May 12, 2023
Membrane-bound trafficking regulates nuclear transport of integral epidermal growth factor receptor (EGFR) and ErbB-2
Ying-Nai Wang1, Heng-Huan Lee, Hong-Jen Lee
1Department of Molecular and Cellular Oncology, University of Texas M.D. Anderson Cancer Center, Houston, Texas 77030, USA.
Abstract:
Nuclear localization of multiple receptor-tyrosine kinases (RTKs), such as EGF receptor (EGFR), ErbB-2, FGF receptor (FGFR), and many others, has been reported by several groups. We previously showed that cell surface EGFR is trafficked to the nucleus through a retrograde pathway from the Golgi to the endoplasmic reticulum (ER) and that EGFR is then translocated to the inner nuclear membrane (INM) through the INTERNET (integral trafficking from the ER to the nuclear envelope transport) pathway. However, the nuclear trafficking mechanisms of other membrane RTKs, apart from EGFR, remain unclear. The purpose of this study was to compare the nuclear transport of EGFR family proteins with that of FGFR-1. Interestingly, we found that digitonin permeabilization, which selectively releases soluble nuclear transporters from the cytoplasm and has been shown to inhibit nuclear transport of FGFR-1, had no effects on EGFR nuclear transport, raising the possibility that EGFR and FGFR-1 use different pathways to be translocated into the nucleus. Using the subnuclear fractionation assay, we further demonstrated that biotinylated cell surface ErbB-2, but not FGFR-1, is targeted to the INM, associating with Sec61β in the INM, similar to the nuclear trafficking of EGFR. Thus, ErbB-2, but not FGFR-1, shows a similar trafficking pathway to EGFR for translocation to the nucleus, indicating that at least two different pathways of nuclear transport exist for cell surface receptors. This finding provides a new direction for investigating the trafficking mechanisms of various nuclear RTKs.
Insights
Cell surface receptors like EGFR and ErbB-2 traffic to the nucleus via a pathway distinct from FGFR-1. This discovery reveals at least two nuclear transport mechanisms for these important signaling proteins.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Multiple receptor-tyrosine kinases (RTKs), including EGFR and FGFR, localize to the nucleus.
- EGFR nuclear import occurs via retrograde transport from the Golgi to the ER and then to the inner nuclear membrane (INM) through the INTERNET pathway.
- Nuclear trafficking mechanisms for RTKs beyond EGFR are largely unknown.
Purpose of the Study:
- To compare the nuclear transport pathways of EGFR family proteins with FGFR-1.
- To elucidate the distinct mechanisms governing nuclear translocation of cell surface receptors.
Main Methods:
- Digitonin permeabilization assay to assess the role of soluble nuclear transporters.
- Subnuclear fractionation assay to track receptor localization within cellular compartments.
- Biotinylation of cell surface receptors to monitor their trafficking.
Main Results:
- Digitonin permeabilization inhibited FGFR-1 nuclear transport but not EGFR nuclear transport, suggesting different pathways.
- Biotinylated ErbB-2, similar to EGFR, was targeted to the INM and associated with Sec61β.
- FGFR-1, unlike EGFR and ErbB-2, did not show similar INM targeting or association with Sec61β.
Conclusions:
- Cell surface ErbB-2 utilizes a nuclear trafficking pathway similar to EGFR, distinct from FGFR-1.
- At least two different pathways mediate nuclear transport of cell surface receptors.
- Findings offer new insights into the diverse mechanisms of nuclear RTK trafficking.
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