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Abnormal Processing of Autophagosomes in Transformed B Lymphocytes from SCARB2-Deficient Subjects
Kurt Gleich1, Michael J Desmond, Darren Lee
1The Institute for Breathing and Sleep, Austin Health , Heidelberg, Australia .
Abstract:
Mutations of the intrinsic lysosomal membrane protein SCARB2 cause action myoclonus-renal failure syndrome (AMRF syndrome), a rare disease characterized by renal and neurological manifestations. In this study, examination of Cos7 cells transfected with SCARB2 cDNA derived from two patients with AMRF syndrome showed that the resultant protein was truncated and was not incorporated into vesicular structures, as occurred with full-length SCARB2 cDNA. Mutant SCARB2 protein failed to colocalize with lysosomes and was found in the endoplasmic reticulum or the cytosol indicating a loss of function. Cultured skin fibroblast and Epstein-Barr virus-transformed lymphoblastoid B cell lines (LCLs) were created from these two patients. Despite the loss of SCARB2 function, studies with lysosomal-associated membrane protein (LAMP) 1 and LAMP2 demonstrated normal lysosomal numbers in fibroblasts and LCLs. Immunofluorescence microscopy using anti-LAMP1 and anti-LAMP2 antibodies also showed normal lysosomal structures in fibroblasts. There was no change in the morphology of fibroblasts examined by electron microscopy compared with cells from unaffected individuals. By contrast, LCLs from individuals bearing SCARB2 mutations had large intracellular vesicles that resembled autophagosomes and contained heterogeneous cellular debris. Some of the autophagosomes were seen to be extruding cellular contents into the media. Furthermore, LCLs had elevated levels of microtubule-associated protein light chain 3-II, consistent with increased autophagy. These data demonstrate that SCARB2 mutations are associated with an inability to process autophagosomes in B lymphocytes, suggesting a novel function for SCARB2 in immune function.
Insights
Mutations in SCARB2 cause AMRF syndrome, leading to dysfunctional protein. In B cells, this impairs autophagosome processing, suggesting SCARB2 has a role in immune function.
Area of Science:
- Cell Biology
- Genetics
- Immunology
Background:
- SCARB2 mutations cause action myoclonus-renal failure (AMRF) syndrome, a rare genetic disorder.
- The SCARB2 protein is an intrinsic lysosomal membrane protein.
- AMRF syndrome presents with renal and neurological symptoms.
Purpose of the Study:
- To investigate the functional consequences of SCARB2 mutations.
- To explore the role of SCARB2 in cellular processes, particularly in B lymphocytes.
- To understand the underlying mechanisms of AMRF syndrome.
Main Methods:
- Transfection of Cos7 cells with patient-derived SCARB2 cDNA.
- Culturing of patient-derived skin fibroblasts and Epstein-Barr virus-transformed lymphoblastoid B cell lines (LCLs).
- Analysis of lysosomal markers (LAMP1, LAMP2), autophagosome markers (LC3-II), and cellular morphology via immunofluorescence and electron microscopy.
Main Results:
- Mutant SCARB2 protein was truncated, not incorporated into vesicles, and localized to the endoplasmic reticulum or cytosol, indicating loss of function.
- Fibroblasts showed normal lysosomal numbers and morphology.
- LCLs exhibited enlarged, autophagosome-like vesicles containing cellular debris and increased LC3-II levels, suggesting impaired autophagosome processing and increased autophagy.
Conclusions:
- SCARB2 mutations lead to a loss of function, affecting protein localization and cellular processing.
- While fibroblasts appear unaffected, B lymphocytes (LCLs) show significant defects in autophagosome processing.
- These findings suggest a novel role for SCARB2 in the autophagy pathway and immune function within B lymphocytes.
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