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Assessing Autophagic Flux by Measuring LC3, p62, and LAMP1 Co-localization Using Multispectral Imaging Flow Cytometry
Published on: July 21, 2017
Immunohistochemical analysis of macroautophagy: recommendations and limitations
Wim Martinet1, Dorien M Schrijvers, Jean-Pierre Timmermans
1Laboratory of Physiopharmacology, University of Antwerp, Antwerp, Belgium. wim.martinet@ua.ac.be
Abstract:
Transmission electron microscopy (TEM) is an indispensable standard method to monitor macroautophagy in tissue samples. Because TEM is time consuming and not suitable for daily routine, many groups try to identify macroautophagy in tissue by conventional immunohistochemistry. The aim of the present study was to evaluate whether immunohistochemical assessment of macroautophagy-related marker proteins such as LC3, ATG5, CTSD/cathepsin D, BECN1/Beclin 1 or SQSTM1/p62 is feasible and autophagy-specific. For this purpose, livers from starved mice were used as a model because hepatocytes are highly sensitive to autophagy induction. ATG7-deficient mouse livers served as negative control. Our findings indicate that unambiguous immunodetection of LC3 in paraffin-embedded tissue specimens was hampered due to low in situ levels of this protein. Maximum sensitivity could only be obtained using high-quality, isoform-specific antibodies, such as antibody 5F10, in combination with Envision+ signal amplification. Moreover, LC3 stains were optimal in neutral-buffered formalin-fixed tissue, immersed in citrate buffer during antigen retrieval. However, even when using this methodology, LC3 monitoring required overexpression of the protein, e.g., in GFP-LC3 transgenic mice. This was not only the case for the liver but also for other organs including heart, skeletal muscle, kidney and gut. Immunohistochemical detection of the autophagy-related proteins ATG5, CTSD or BECN1 is not recommendable for monitoring autophagy, due to lack of differential gene expression or doubtful specificity. SQSTM1 accumulated in autophagy-deficient liver, thus it is not a useful marker for tissue with autophagic activity. We conclude that TEM remains an indispensable technique for in situ evaluation of macroautophagy, particularly in clinical samples for which genetic manipulation or other in vitro techniques are not feasible.
Insights
Transmission electron microscopy (TEM) remains essential for monitoring macroautophagy in tissues. Immunohistochemistry for markers like LC3 is unreliable for routine autophagy assessment in clinical samples.
Area of Science:
- Cell Biology
- Biochemistry
- Histology
Background:
- Transmission electron microscopy (TEM) is the gold standard for monitoring macroautophagy in tissue.
- Conventional immunohistochemistry (IHC) is explored as a more routine alternative to TEM.
- The study evaluates the feasibility and specificity of IHC for autophagy-related proteins.
Purpose of the Study:
- To assess the reliability of immunohistochemical detection of macroautophagy markers in tissue.
- To determine if IHC can be a substitute for TEM in routine autophagy monitoring.
- To identify optimal conditions for LC3 immunodetection.
Main Methods:
- Utilized starved mouse livers as a model for autophagy induction.
- Employed ATG7-deficient mouse livers as a negative control.
- Tested IHC for LC3, ATG5, CTSD/cathepsin D, BECN1/Beclin 1, and SQSTM1/p62 proteins.
Main Results:
- Unambiguous LC3 immunodetection was challenging due to low in situ levels, requiring specific antibodies and signal amplification.
- Optimal LC3 staining conditions were identified, but protein overexpression was still necessary.
- IHC for ATG5, CTSD, and BECN1 was not recommended due to unreliable specificity or gene expression.
- SQSTM1 accumulation indicated autophagy deficiency, not activity.
Conclusions:
- TEM remains the indispensable technique for in situ macroautophagy evaluation, especially in clinical settings.
- Current IHC methods are not sufficiently reliable or specific for routine macroautophagy monitoring.
- Further optimization or alternative markers are needed for non-TEM autophagy assessment in tissues.

