bioRxiv · 10.1101/2023.10.27.564405
The molecular architecture of the kidney slit diaphragm
Abstract
Vertebrate life depends on renal function to filter excess fluid and remove low-molecular-weight waste products. An essential component of the kidney filtration barrier is the slit diaphragm (SD), a specialized cell-cell junction between podocytes. Although the constituents of the SD are largely known, its molecular organization remains elusive. Here, we use super-resolution correlative light and electron microscopy to quantify a linear rate of reduction in albumin concentration across the filtration barrier. Next, we use cryo-electron tomography of vitreous lamellae from high-pressure frozen native glomeruli to analyze the molecular architecture of the SD. The resulting densities resemble a fishnet pattern. Fitting of Nephrin and Neph1, the main constituents of the SD, results in a complex interaction pattern with multiple contact sites between the molecules. Using molecular dynamics flexible fitting, we construct a blueprint of the SD, where we describe all interactions. Our architectural understanding of the SD reconciles previous findings and provides a mechanistic framework for the development of novel therapies to treat kidney dysfunction.
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Frangakis, A. S., Grahammer, F., Heilemann, M., Flottmann, B., Scheffer, M. P., Rahm, J. V., Wieland, K., Birtasu, A. N.. 2023-10-27. The molecular architecture of the kidney slit diaphragm. https://doi.org/10.1101/2023.10.27.564405
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