DOI: 10.1126/sciadv.aeg8117 ISSN: 2375-2548
Spatial organization of AQP4 water channel expression in the human brain
Tahmineh Taheri, Asa Farahani, Zhen-Qi Liu, Eric G. Ceballos, Adil Harroud, Alain Dagher, Bratislav Misic
Aquaporin-4 (AQP4) water channels support the glymphatic system, a brain-wide pathway that clears cerebral waste products. Here, we use
AQP4
gene expression to reconstruct a whole-brain glymphatic-related topography and link it to vascular physiology, glioma, and vulnerability to neurodegenerative diseases. We find that
AQP4
expression is highly organized across the brain, peaking in subcortical, ventral, and periventricular territories, consistent with a clearance axis near cerebrospinal fluid reservoirs and perivascular interfaces. Linking
AQP4
expression to vascular organization,
AQP4
-enriched regions show lower normative blood perfusion, but lie close to areas commonly affected by cerebral small vessel disease. Turning to neurodegeneration, we find that atrophy patterns colocalize with
AQP4
expression, most strongly for tau and TDP-43 proteinopathies, and high-atrophy regions lie close to
AQP4
hotspots in anatomical and structural connectome space. Normative positron emission tomography markers of neuroinflammation strengthen the spatial alignment between
AQP4
expression and disease atrophy. Last, we show that glioma is most frequent in
AQP4
-enriched regions. Collectively, this work highlights how
AQP4
expression relates to brain physiology and vulnerability.