Loss of ADAMTS9 results in Nephronophthisis like polycystic kidneys by disrupting ciliogenesis and ECM dynamics
Fischer, S.; Robert, K. L.; Ahmed, M.; Kane, G. I.; Atukorale, P. U.; Nandadasa, S.
Show abstract
ADAMTS9 mutations cause the ciliopathies nephronophthisis and Joubert syndrome. Here we show that deletion of ADAMTS9 in the proximal nephron leads to polycystic kidney development in mice. In males, Adamts9 deletion cause kidneys to become highly cystic but remain small without undergoing enlargement, causing early postnatal lethality. Female mice on the other hand, develop cystic kidneys but progress slowly. ADAMTS9 deletion disrupted ciliogenesis by the loss of ciliary transition zone (TZ) protein TMEM67 cleavage, leading to loss of the MKS/B9 module - a key component of the ciliary gate. Functional analysis of all eight ciliopathy patient variants of ADAMTS9 identified to date, showed TMEM67 C-terminus failed to localize to the transition zone, thus disrupting a key regulatory mechanism in patient renal ciliogenesis. Modeling ADAMTS9-mediated TMEM67 cleavage utilizing our novel TMEM67-cleavage deficient mice revealed loss of TZ formation but not elevated canonical Wnt signaling as the underlying mechanism driving cystogenesis. We show that Adamts9 deletion leads to comparatively intense interstitial collagen deposition, which likely restricts kidney enlargement resulting in the characteristically small kidney phenotype in nephronophthisis and increased immune response. By comparative analysis of four interconnected polycystic kidney models in addition to Pkd1 and Pkd2 deleted kidneys, we identify differential collagen homeostasis is the principle determining factor deciphering cystic kidney size and type.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Mice with renal-specific alterations of stem cell-associated signaling develop symptoms of chronic kidney disease but surprisingly no tumors 96%
- Notch dimerization provides robustness against environmental insults and is required for vascular integrity. 94%
- Detection of infiltrating fibroblasts by single-cell transcriptomics in human kidney allografts 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.