FP6Отличие2004–2008

PKD IN TUBULOGENESIS · Role of Polycystic Kidney disease proteins in establishing and maintaining tubular structure

6РП — Действия „Мария Кюри“

Период
2004-07-01 → 2008-06-30
Финансиране от ЕС
1 307 005 €
Участници
1
Схема
EXT

Линиите свързват координатора с партньорите. За проекти отпреди 2014 г. CORDIS не винаги дава точни координати. Тези точки са на ниво град или държава.

Накратко на български

Протеините полицистин-1 и полицистин-2 се изследват, за да се разбере как влияят върху структурата на бъбречните канали. Това е важно, защото мутации в съответните гени водят до образуване на кисти и бъбречна недостатъчност при милиони хора.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Final Activity Report Summary - PKD IN TUBULOGENESIS (Role of Polycystic Kidney Disease proteins in establishing and maintaining tubular structure)

Autosomal dominant polycystic kidney disease (ADPKD) is one of the most common genetic diseases with an incidence of 1 in 1 000 in the general population affecting more than 12 million people worldwide. The hallmark of this slowly progressive disease is bilateral renal cysts formation. Cysts develop by massive enlargement of every segment of the nephron throughout an individual's lifetime and approximately 50 % of the patients progress to renal failure by age 50, requiring dialysis or transplant. There are no specific therapies to date to cure ADPKD and dyalisis and organ replacement therapy are the only available treatments to date. About 10 % of all patients undergoing renal transplantation are ADPKD patients generating an incredible economical burden and a serious social problem. Mutations in two genes have been to date associated with the disease: PKD1 and PKD2. The former is responsible for 85 % of all cases, while the latter for the remaining 15 %. Both genes are developmentally regulated and are believed to play a key role in normal renal tubular differentiation, but both proteins' functions are largely unkown. PKD1 encodes a large (520kDa) transmembrane receptor (polycystin-1, PC-1) involved in cell / cell or cell / matrix interactions, while the PKD2 gene product (Polycystin-2, PC-2) is a non-selective cation channel. The goal of this project was to implement a newly established lab entirely focused on understanding the molecular basis of the disease with a particular interest in understanding the function of polycystin-1. The four major achievements of this EXT grant are as follow: 1. Using a series of gain-and loss-of- function cellular systems we were able to better define the function of polycystin-1. In particular, we demonstrated that polycystin-1 is able to control cell migration, the actin cytoskeleton and cell-cell adhesion through regulation of GSK3beta. In addition, we found that PC-1 is able to regulate polarised migration through regulation of the microtubular cytoskeleton. 2 .We have identified a new domain in the C-tail of PC-1, performed an interaction screening and identified several potential interactors. Of these two have been followed closely and were verified by in vitro GST pull-down assays and by use of NMR spectroscopy in collaboration with the group of Dr G. Musco. Furthermore, both interactors were shown to interact with full-length polycystin-1 and we are currently performing functional studies to understand the biological significance of such interactions. 3. We were able to demonstrate that polycystin-1 plays a role in renal development by developing a renal organ culture technique. Using cultures of metanephric explants from E11.5 or E12.5 Pkd1-/- kidneys no branching defects could be visualized as compared to controls. However, culturing of organ cultures at day E14.5 showed defective growth and enhancement of apoptosis, have defective nephrogenesis and fail to elongate the mesenchymal-derived renal tubule properly. 4. We have generated knock-in mice carrying a tagged version of endogenous PC-1 in which we could remove the whole C-terminus by the use of the Cre-Lox system. Highly immunogenic commercially available antibodies could thus be employed for staining the protein and wild-type tissues could be easily employed as negative controls. Our strategy was successful and after performing a number of controls to make sure that the protein generated by our manipulations is fully functional, we have performed a full characterization of endogenous polycystin-1. Furthermore, we were able to achieve tissue-specific inactivation of the gene.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Autosomal Dominant Polycystic Kidney Disease (ADPKD) is one of the most common genetic diseases, affecting more than 12 million people worldwide. Two genes have been linked to the disease, PKD1, responsible for 85% of cases, and PKD2 for 15%.The genes are developmentally regulated and believed to play a key role in renal tubular differentiation. So little is known about the molecular aspects of the disease, including the function of the two gene products Polycystin-1 (PC-1) and 2 (PC-2), that no remedies have been identified to date. PKD causes 10% of all the renal transplantations in the world and in Europe.Only recently the function of the two proteins started to be unravelled. PC-1 is a 520kDa non-tyrosine kinase receptor involved in cell-cell/matrix interactions and in primary cilia function. PC-2 is a calcium channel most likely at the plasma membrane and in primary cilia. This Marie Curie Excellence Grant proposal seeks support for the implementation of a newly developed group based in Italy upon return of its team leader from the USA.The team leader was the first one to succeed in expression of full-length PC-1 and to generate a functional model for the protein. She now proposes to assemble an international excellence group to continue molecular studies on ADPKD using the invaluable tools generated as well as developing novel ones.The broad projects proposed include:- identification of a ligand for PC-1;- characterization of a polyproline sequence in the C-terminus of PC-1 and determination of its functional role within the context of the full-length molecule;- in vivo studies on the role of PC-1 in renal development and generation of animal models to better understand the disease.The team is part of the prestigious Dulbecco Telethon Institute (D TI), a virtual Institute created to counteract brain drain and will be located in the foremost Institute for Molecular Medicine in Italy, Dibit-San Raffaele Hospital.

Оригинален текст от CORDIS (на английски).

Участници

  • FONDAZIONE TELETHON · ROMAКоординаторНиво градИталия

Връзки

Данни: CORDIS, © Европейски съюз