Back

Adaptor protein complex 2 (AP2) participates in biogenesis and homeostasis of myelin sheaths in the central nervous system

Siems, S. B.; Jung, R. B.; Jahn, O.; Meschkat, M.; Michanski, S.; Lukasik, N.; Hummert, S.; Sasmita, A. O.; Mobius, W.; Benseler, F.; Brose, N.; Kramer-Albers, E.-M.; Haucke, V.; Nave, K.-A.; Werner, H. B.

2025-09-03 neuroscience
10.1101/2025.09.02.673641 bioRxiv
Show abstract

Myelination of CNS axons requires oligodendrocytes to undergo extensive morphological changes by producing large amounts of myelin membrane with defined protein composition and structure. The formation of myelin sheaths thus involves efficient trafficking and sorting of future myelin constituents via vesicles that fuse with prospective myelin membranes by exocytotic mechanisms. However, the functional relevance of other trafficking steps in oligodendocytes for myelin biogenesis is largely unknown. Here, we followed the hypothesis that developmental myelination involves endocytic mechanisms. In this model, Golgi-derived vesicles fuse with the oligodendroglial plasma membrane, from which myelin constituents are retrieved by endocytosis into endosomal/lysosomal organelles before their final integration into the growing sheath. Considering that adaptor protein complex-2 subunit-{micro} (AP2M) facilitates AP2-dependent endocytosis, we recombined the Ap2m-gene in myelin-forming oligodendrocytes, causing both hypomyelination and specific changes in the myelin proteome. Most strikingly, lysosomal membrane proteins accumulate in the abaxonal (outermost) myelin layer, identifying this membrane as an active site for retrieving constituents from myelin sheaths. These data demonstrate that the AP2 complex serves a critical function in developmental myelination in vivo. Unexpectedly, we also observed pathological myelin outfoldings indicative of focal hypermyelination. Consistent with the hypothesis that this phenotype reflects impaired maintenance rather than biogenesis of myelin sheaths, recombination of the Ap2m-gene in oligodendrocytes of adult mice caused late-onset progressive focal hypermyelination. These results indicate that, in addition to astrocytic and microglial phagocytosis, oligodendrocytes cell-autonomously contribute to maintaining the structure of healthy myelin sheaths via AP2-dependent mechanisms.

Matching journals

The top 2 journals account for 50% of the predicted probability mass.

1
Glia
81 papers in training set
Top 0.1%
43.8%
2
The Journal of Neuroscience
1025 papers in training set
Top 2%
9.3%
50% of probability mass above
3
eLife
5828 papers in training set
Top 20%
6.0%
4
Cell Reports
1498 papers in training set
Top 10%
4.1%
5
Frontiers in Cellular Neuroscience
91 papers in training set
Top 0.4%
3.9%
6
Neurobiology of Disease
148 papers in training set
Top 1%
3.0%
7
Development
497 papers in training set
Top 3%
2.3%
8
Acta Neuropathologica Communications
89 papers in training set
Top 1%
1.9%
9
Nature Communications
5641 papers in training set
Top 44%
1.8%
10
EMBO Reports
263 papers in training set
Top 3%
1.8%
11
Acta Neuropathologica
58 papers in training set
Top 0.9%
1.7%
12
Journal of Neurochemistry
53 papers in training set
Top 1%
1.1%
13
Frontiers in Molecular Neuroscience
47 papers in training set
Top 0.9%
1.1%
14
Life Science Alliance
285 papers in training set
Top 6%
1.1%
15
Journal of Cell Science
393 papers in training set
Top 4%
1.1%
16
eneuro
439 papers in training set
Top 7%
1.1%
17
Brain
168 papers in training set
Top 3%
1.0%
18
iScience
1154 papers in training set
Top 32%
1.0%
19
Proceedings of the National Academy of Sciences
2444 papers in training set
Top 43%
0.8%
20
Nature Neuroscience
252 papers in training set
Top 5%
0.8%
21
ASN Neuro
10 papers in training set
Top 0.1%
0.8%
22
Molecular Neurodegeneration
55 papers in training set
Top 2%
0.6%