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   A GDF5 Point Mutation Strikes Twice - Causing BDA1 and SYNS2  
   
نویسنده degenkolbe e. ,könig j. ,zimmer j. ,walther m. ,reißner c. ,nickel j. ,plöger f. ,raspopovic j. ,sharpe j. ,dathe k. ,hecht j.t. ,mundlos s. ,doelken s.c. ,seemann p.
منبع plos genetics - 2013 - دوره : 9 - شماره : 10
چکیده    Growth and differentiation factor 5 (gdf5) is a secreted growth factor that belongs to the bone morphogenetic protein (bmp) family and plays a pivotal role during limb development. gdf5 is a susceptibility gene for osteoarthritis (oa) and mutations in gdf5 are associated with a wide variety of skeletal malformations ranging from complex syndromes such as acromesomelic chondrodysplasias to isolated forms of brachydactylies or multiple synostoses syndrome 2 (syns2). here,we report on a family with an autosomal dominant inherited combination of syns2 and additional brachydactyly type a1 (bda1) caused by a single point mutation in gdf5 (p.w414r). functional studies,including chondrogenesis assays with primary mesenchymal cells,luciferase reporter gene assays and surface plasmon resonance analysis,of the gdf5w414r variant in comparison to other gdf5 mutations associated with isolated bda1 (p.r399c) or syns2 (p.e491k) revealed a dual pathomechanism characterized by a gain- and loss-of-function at the same time. on the one hand insensitivity to the main gdf5 antagonist noggin (nog) leads to a gdf5 gain of function and subsequent syns2 phenotype. whereas on the other hand,a reduced signaling activity,specifically via the bmp receptor type ia (bmpr1a),is likely responsible for the bda1 phenotype. these results demonstrate that one mutation in the overlapping interface of antagonist and receptor binding site in gdf5 can lead to a gdf5 variant with pathophysiological relevance for both,bda1 and syns2 development. consequently,our study assembles another part of the molecular puzzle of how loss and gain of function mutations in gdf5 affect bone development in hands and feet resulting in specific types of brachydactyly and syns2. these novel insights into the biology of gdf5 might also provide further clues on the pathophysiology of oa. © 2013 degenkolbe et al.
آدرس berlin-brandenburg center for regenerative therapies (bcrt),charité - universitätsmedizin berlin,berlin,germany,berlin-brandenburg school for regenerative therapies (bsrt),charité - universitätsmedizin berlin,berlin, Germany, berlin-brandenburg center for regenerative therapies (bcrt),charité - universitätsmedizin berlin,berlin,germany,berlin-brandenburg school for regenerative therapies (bsrt),charité - universitätsmedizin berlin,berlin,germany,roche diagnostics international ag,rotkreuz, Switzerland, berlin-brandenburg center for regenerative therapies (bcrt),charité - universitätsmedizin berlin,berlin,germany,berlin-brandenburg school for regenerative therapies (bsrt),charité - universitätsmedizin berlin,berlin,germany,section of clinical allergology,paul-ehrlich-institut federal institute for vaccines and biomedicines,langen, Germany, berlin-brandenburg center for regenerative therapies (bcrt),charité - universitätsmedizin berlin,berlin, Germany, institute of anatomy,dept. anatomy and molecular neurobiology,universitätsklinikum münster,münster, Germany, lehrstuhl für physiologische chemie ii,theodor-boveri-institut für biowissenschaften (biozentrum) der universität würzburg,würzburg,germany,department of tissue engineering and regenerative medicine,universitätsklinikum würzburg,würzburg, Germany, biopharm gmbh,heidelberg, Germany, embl-crg systems biology program,centre for genomic regulation,barcelona,spain,universitat pompeu fabra (upf),barcelona, Spain, embl-crg systems biology program,centre for genomic regulation,barcelona,spain,universitat pompeu fabra (upf),barcelona,spain,institució catalana de recerca i estudis avançats (icrea),barcelona, Spain, institut für medizinische genetik und humangenetik,charité - universitätsmedizin berlin,berlin, Germany, department of pediatrics,university of texas medical school at houston,houston,tx, United States, berlin-brandenburg center for regenerative therapies (bcrt),charité - universitätsmedizin berlin,berlin,germany,institut für medizinische genetik und humangenetik,charité - universitätsmedizin berlin,berlin,germany,research group development and disease,max planck institute for molecular genetics,berlin, Germany, institut für medizinische genetik und humangenetik,charité - universitätsmedizin berlin,berlin, Germany, berlin-brandenburg center for regenerative therapies (bcrt),charité - universitätsmedizin berlin,berlin,germany,berlin-brandenburg school for regenerative therapies (bsrt),charité - universitätsmedizin berlin,berlin,germany,research group development and disease,max planck institute for molecular genetics,berlin, Germany
 
     
   
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