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10篇 您的检索式:作者名="Kade S"
    题名 作者 年代 出处 被引量
1Frequency and prognostic impact of mutations in SRSF2, U2AF1, and ZRSR2 in patients with myelodysplastic syndromes 显示文摘Thol F Kade S Schlarmann C 2012Blood2012,119,15:1
2Frequency and prognostic impact of mutations in SRSF2, U2AFI, and ZRSR2 in patients with myelodysplastic syndromes 显示文摘Thol F Kade S Schlarmann C 2012Blood2012,119,15:1
3Frequency and prognostic impact of mutations in SRSF2, U2AFI, and ZRSR2 in patients with myelodysplastie syndromes 显示文摘Thol F Kade S Schlannann C 2012Blood2012,119,15:1
4Frequency and prognostic impact of mutations in SRSF2,U2AF1,and ZRSR2 in patients with myelodysplastic syndromes显示文摘Thol F Kade S Schlarmann C 2012Blood2012,119,15:1
5Frequency and prognostic impact of mutations in SRSF2,U2AF1,and ZRSR2 in patients with myelodysplastic syndromes显示文摘Thol F Kade S Schlarmann C 2012Blood2012,119,:1
6Antimutagedie potential of the Thai herb, Mucuna coUettii Lace显示文摘WICHAI C WAN'DEE S KADE P 2008Journal of Etlmophanuacology2008,115,1:1
7Renal resistive index as a marker of vascular damage in cardiovascular diseases显示文摘Lubas A Kade G Niemczyk S 0,,:1
8Frequency and prognostic impact of mutations in SRSF2,U2AF1,and ZRSR2 in patients with myelodysplastic syndromes 显示文摘Thol F Kade S Schlarmann C 2012Blood2012,119,15:1
9Renal resistive index as a marker of vascular dmnage in cardiovascular diseases 显示文摘Lubas A Kade G Niemczyk S 2014Int Urol Nephrol2014,46,2:1
10Loss of Mgat5a-mediated N-glycosylation stimulates regeneration in zebrafish显示文摘Background:We are using genetics to identify genes specifically involved in hearing regeneration.In a large-scale genetic screening,we identified mgat5a,a gene in the N-glycosylation biosynthesis pathway whose activity negatively impacts hair cell regeneration.Methods:We used a combination of mutant analysis in zebrafish and a hair cell regeneration assay to phenotype the loss of Mgat5a activity in zebrafish.We used pharmacological inhibition of N-glycosylation by swansonine.We also used over-expression analysis by mRNA injections to demonstrate how changes in N-glycosylation can alter cell signaling.Results:We found that mgat5a was expressed in multiple tissues during zebrafish embryo development,particularly enriched in neural tissues including the brain,retina,and lateral line neuromasts.An mgat5a insertional mutation and a CRISPR/Cas9-generated truncation mutation both caused an enhancement of hair cell regeneration which could be phenocopied by pharmacological inhibition with swansonine.In addition to hair cell regeneration,inhibition of the N-glycosylation pathway also enhanced the regeneration of lateral line axon and caudal fins.Further analysis showed that N-glycosylation altered the responsiveness of TGF-beta signaling.Conclusions:The findings from this study provide experimental evidence for the involvement of N-glycosylation in tissue regeneration and cell signaling.Wuhong Pei Sunny C.Huang Lisha Xu Kade Pettie María Laura Ceci Mario Sánchez Miguel L.Allende Shawn M.Burgess 2016Cell Regeneration2016,5,1:0
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