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10.1073/pnas.1713625114

http://scihub22266oqcxt.onion/10.1073/pnas.1713625114
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C5676932!5676932!29078390
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suck abstract from ncbi


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pmid29078390      Proc+Natl+Acad+Sci+U+S+A 2017 ; 114 (44): E9308-17
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  • WD40-repeat 47, a microtubule-associated protein, is essential for brain development and autophagy #MMPMID29078390
  • Kannan M; Bayam E; Wagner C; Rinaldi B; Kretz PF; Tilly P; Roos M; McGillewie L; Bär S; Minocha S; Chevalier C; Po C; Chelly J; Mandel JL; Borgatti R; Piton A; Kinnear C; Loos B; Adams DJ; Hérault Y; Collins SC; Friant S; Godin JD; Yalcin B; Vancollie VE; Anthony LFE; Maguire SA; Lafont D; Pearson SA; Gates AS; Sanderson M; Shannon C; Sumowski MT; McLaren-Jones RSB; Swiatkowska A; Isherwood CM; Cambridge EL; Wilson HM; Caetano SS; Maguire AKB; Galli A; Speak AO; Dench J; Tuck E; Estabel J; Green A; Tudor C; Siragher E; Dabrowska M; Mazzeo CI; Hooks Y; Kussy F; Griffiths M; Gannon D; Doe B; Boroviak K; Wardle-Jones H; Griggs N; Bottomley J; Ryder E; Gleeson D; White JK; Ramirez-Solis R; Lelliott CJ
  • Proc Natl Acad Sci U S A 2017[Oct]; 114 (44): E9308-17 PMID29078390show ga
  • We present an identification of the relevance of WD40-repeat (WDR) genes in brain connectivity, highlighting the power of unbiased mouse studies in the field of neuroscience. We focus on the poorly studied WDR47 protein sharing structural homology with LIS1, which causes lissencephaly. WDR47 plays a role in progenitor proliferation, neuronal migration, and fiber tract projections in a similar fashion to LIS1 but with the distinctive particularity that WDR47 inhibits autophagic flux. This provides a functional link between autophagy biology and the C-terminal to LisH domain in mammals. Importantly, WDR47 uncovers an aspect of corpus callosum biology pointing toward a link between the regulation of microtubule dynamics and autophagic flux for axonal outgrowth and guidance.
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