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A model of hereditary sensory and autonomic neuropathy type 1 reveals a role of glycosphingolipids in neuronal polarity Conference paper
Cui, M., Ying, R., Jiang, X., Gobel, V., Zhang, H.. A model of hereditary sensory and autonomic neuropathy type 1 reveals a role of glycosphingolipids in neuronal polarity[C], 2019.
Authors:  Cui, M.;  Ying, R.;  Jiang, X.;  Gobel, V.;  Zhang, H.
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HSAN1  glycosphingolipids  neuronal polarity  
The secretory pathway, linked to recycling routes, specifies epithelial membrane polarity Conference paper
Zhang, N, Zhang, H., Khan, L., Jafai, G., Eun, Y., Membreno, E., Gobel, V.. The secretory pathway, linked to recycling routes, specifies epithelial membrane polarity[C], 2019.
Authors:  Zhang, N;  Zhang, H.;  Khan, L.;  Jafai, G.;  Eun, Y.; et al.
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Secretory pathway  recycling routes  epithelial membrane polarity  
The C. elegans intestine as a model for intercellular lumen morphogenesis and in vivo polarized membrane biogenesis at the single-cell level: Labeling by antibody staining, RNAi loss-of-function analysis and imaging Journal article
Zhang N., Khan L.A., Membreno E., Jafari G., Yan S., Zhang H., Gobel V.. The C. elegans intestine as a model for intercellular lumen morphogenesis and in vivo polarized membrane biogenesis at the single-cell level: Labeling by antibody staining, RNAi loss-of-function analysis and imaging[J]. Journal of Visualized Experiments, 2017, 2017(128).
Authors:  Zhang N.;  Khan L.A.;  Membreno E.;  Jafari G.;  Yan S.; et al.
Favorite | TC[WOS]:0 TC[Scopus]:7 | Submit date:2019/01/16
Developmental Biology  Developmental Genetics  Epithelial Polarity  In Situ imagIng  Issue 128  Membrane Biology  Single-cell Analysis  Tubulogenesis  
The C. elegans excretory canal as a model for intracellular lumen morphogenesis and in vivo polarized membrane biogenesis in a single cell: Labeling by GFP-fusions, RNAi interaction screen and imaging Journal article
Zhang N., Membreno E., Raj S., Zhang H., Khan L.A., Gobel V.. The C. elegans excretory canal as a model for intracellular lumen morphogenesis and in vivo polarized membrane biogenesis in a single cell: Labeling by GFP-fusions, RNAi interaction screen and imaging[J]. Journal of Visualized Experiments, 2017, 2017(128).
Authors:  Zhang N.;  Membreno E.;  Raj S.;  Zhang H.;  Khan L.A.; et al.
Favorite | TC[WOS]:5 TC[Scopus]:7 | Submit date:2019/01/16
Confocal Microscopy  Developmental Biology  Developmental Genetics  Dissecting Fluorescence Microscopy  Intracellular Lumen Morphogenesis  Issue 128  SIngle Cell In Vivo Analysis  Unicellular Tubulogenesis  
A vesicle-intrinsically regulated pathway for apical polarity Conference paper
Zhang, N., Zhang, H., Khan, L., Gholamali , G., Eun, Y., Membreno, E., El-Daouk, R., Gobel, V.. A vesicle-intrinsically regulated pathway for apical polarity[C], 2016.
Authors:  Zhang, N.;  Zhang, H.;  Khan, L.;  Gholamali , G.;  Eun, Y.; et al.
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Vesicle  apical polarity  
RNAi-based screens identify tube morephogenesis genes in the C. elegans spermatheca Conference paper
Khan, A., Wu, F., Ying, R., Gobel, V., Zhang, H.. RNAi-based screens identify tube morephogenesis genes in the C. elegans spermatheca[C], 2016.
Authors:  Khan, A.;  Wu, F.;  Ying, R.;  Gobel, V.;  Zhang, H.
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RNAi screen  tube morphogenesis  C. elegans  spermatheca  
Identification of tube morphogenesis genes in the C. elegans gonad system by RNAi screens Conference paper
Khan, A., Wu, F., Ying, R., Gobel, V., Zhang, H.. Identification of tube morphogenesis genes in the C. elegans gonad system by RNAi screens[C], 2016.
Authors:  Khan, A.;  Wu, F.;  Ying, R.;  Gobel, V.;  Zhang, H.
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Tube morphogenesis  C. elegans  RNAi screen  gonad system  
C. elegans screens on polarized organ morphogenesis identify genes that regulate both polarity and growth Conference paper
Eun, Y., Zhang, H., Khan, L., Zhang, N., Gobel, V.. C. elegans screens on polarized organ morphogenesis identify genes that regulate both polarity and growth[C], 2015.
Authors:  Eun, Y.;  Zhang, H.;  Khan, L.;  Zhang, N.;  Gobel, V.
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C. elegans  RNAi screens  organ morphogenesis  polarity and growth  
Peri-lumenal intermediate filaments and microtubules maintain a single lumen in extending C. elegans excretory canals Conference paper
Khan, L., Zhang, H., Membreno, E., Gobel, V.. Peri-lumenal intermediate filaments and microtubules maintain a single lumen in extending C. elegans excretory canals[C], 2015.
Authors:  Khan, L.;  Zhang, H.;  Membreno, E.;  Gobel, V.
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intermediate filaments  microtubules  C. elegans  excretory canals  
Modifier screens of a C. elegans tubular polarity phenotype identify components of a novel vesicle-based pathway for polarized membrane biogenesis Conference paper
Zhang, N., Zhang, H., Khan, L., Gobel, V.. Modifier screens of a C. elegans tubular polarity phenotype identify components of a novel vesicle-based pathway for polarized membrane biogenesis[C], 2015.
Authors:  Zhang, N.;  Zhang, H.;  Khan, L.;  Gobel, V.
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Modifier Screens  Tubular polarity  vesicle-based pathway  membrane biogenesis