scholarly article | Q13442814 |
P50 | author | Russell E McConnell | Q80335995 |
Matthew John Tyska | Q90406485 | ||
P2093 | author name string | Bechara Kachar | |
Bryan A Millis | |||
Qing Yin Zheng | |||
Nathan E Grega-Larson | |||
Ki Taek Nam | |||
David A Shifrin | |||
Yuxi Zheng | |||
Scott W Crawley | |||
Andrew E Benesh | |||
Suli Mao | |||
P2860 | cites work | A defect in harmonin, a PDZ domain-containing protein expressed in the inner ear sensory hair cells, underlies Usher syndrome type 1C | Q24290185 |
Proteomic analysis of the enterocyte brush border | Q24293478 | ||
A new role for the architecture of microvillar actin bundles in apical retention of membrane proteins | Q24298199 | ||
Myosin VIIa, harmonin and cadherin 23, three Usher I gene products that cooperate to shape the sensory hair cell bundle | Q24337137 | ||
The Usher syndrome proteins cadherin 23 and harmonin form a complex by means of PDZ-domain interactions | Q24538474 | ||
Review series: The cell biology of hearing | Q24601353 | ||
Structures of usher syndrome 1 proteins and their complexes | Q27023615 | ||
C-cadherin ectodomain structure and implications for cell adhesion mechanisms | Q27638880 | ||
Structural determinants of cadherin-23 function in hearing and deafness | Q27660584 | ||
Structure of the N terminus of cadherin 23 reveals a new adhesion mechanism for a subset of cadherin superfamily members | Q27661886 | ||
Structure of a force-conveying cadherin bond essential for inner-ear mechanotransduction | Q27675024 | ||
mu-Protocadherin, a novel developmentally regulated protocadherin with mucin-like domains | Q28143836 | ||
Ezrin is essential for epithelial organization and villus morphogenesis in the developing intestine | Q28510081 | ||
Myosin-1a is critical for normal brush border structure and composition | Q28512472 | ||
Myosin VIIa and sans localization at stereocilia upper tip-link density implicates these Usher syndrome proteins in mechanotransduction | Q28569812 | ||
A role for myosin-1A in the localization of a brush border disaccharidase | Q28574467 | ||
Liver-intestine cadherin: molecular cloning and characterization of a novel Ca(2+)-dependent cell adhesion molecule expressed in liver and intestine | Q28580345 | ||
Plastin 1 binds to keratin and is required for terminal web assembly in the intestinal epithelium | Q28588267 | ||
In vivo, villin is required for Ca(2+)-dependent F-actin disruption in intestinal brush borders | Q28593765 | ||
Myosin-XVa is required for tip localization of whirlin and differential elongation of hair-cell stereocilia | Q28593953 | ||
Myosin-VIIb, a novel unconventional myosin, is a constituent of microvilli in transporting epithelia. | Q30168113 | ||
Harmonin mutations cause mechanotransduction defects in cochlear hair cells. | Q30488014 | ||
Ush1c gene expression levels in the ear and eye suggest different roles for Ush1c in neurosensory organs in a new Ush1c knockout mouse | Q30495605 | ||
Versatile fluorescent probes for actin filaments based on the actin-binding domain of utrophin | Q30629061 | ||
Identification of an autoimmune enteropathy-related 75-kilodalton antigen | Q30779073 | ||
Mutations in protocadherin 15 and cadherin 23 affect tip links and mechanotransduction in mammalian sensory hair cells | Q31008387 | ||
Characterization of the enterocyte-like brush border cytoskeleton of the C2BBe clones of the human intestinal cell line, Caco-2 | Q33200951 | ||
Vertebrate myosin VIIb is a high duty ratio motor adapted for generating and maintaining tension | Q33223992 | ||
Proteomic changes during intestinal cell maturation in vivo | Q33372654 | ||
Short bowel syndrome: a nutritional and medical approach. | Q33787695 | ||
A recessive contiguous gene deletion causing infantile hyperinsulinism, enteropathy and deafness identifies the Usher type 1C gene | Q33916587 | ||
Usher syndrome: definition and estimate of prevalence from two high-risk populations | Q34272686 | ||
Early biochemical responses of the small intestine of coeliac patients to wheat gluten | Q34391355 | ||
Cadherin 23 and protocadherin 15 interact to form tip-link filaments in sensory hair cells | Q34680349 | ||
Enteropathogenic and enterohemorrhagic Escherichia coli infections: emerging themes in pathogenesis and prevention | Q35016442 | ||
A complex of Protocadherin-19 and N-cadherin mediates a novel mechanism of cell adhesion | Q35636578 | ||
Imaging-related medications: a class overview. | Q36054810 | ||
Thinking outside the cell: how cadherins drive adhesion | Q36065248 | ||
Mammalian defensins in the antimicrobial immune response | Q36134856 | ||
Ready…aim…fire into the lumen: a new role for enterocyte microvilli in gut host defense | Q36304085 | ||
Drosophila melanogaster Cad99C, the orthologue of human Usher cadherin PCDH15, regulates the length of microvilli | Q36320487 | ||
Multi-layered regulation of intestinal antimicrobial defense | Q37193718 | ||
High-resolution structure of hair-cell tip links | Q37293816 | ||
Microvillous inclusion disease--an ultrastructural diagnosis: with a review of the literature | Q37836865 | ||
How cells know the size of their organelles | Q38041463 | ||
Mechanics of epithelial tissue homeostasis and morphogenesis | Q38112667 | ||
Gene expression profiling of intestinal epithelial cell maturation along the crypt-villus axis | Q38328111 | ||
Molecular organization of the intestinal brush border | Q39609222 | ||
Organization, chemistry, and assembly of the cytoskeletal apparatus of the intestinal brush border | Q39843981 | ||
Cell-adhesion molecule uvomorulin is localized in the intermediate junctions of adult intestinal epithelial cells | Q41468891 | ||
Localization of specificity determining sites in cadherin cell adhesion molecules | Q41737531 | ||
Cadherin Cad99C is required for normal microvilli morphology in Drosophila follicle cells | Q47072000 | ||
Ankyrin binding to (Na+ + K+)ATPase and implications for the organization of membrane domains in polarized cells | Q57253842 | ||
Assembly of the brush border cytoskeleton: changes in the distribution of microvillar core proteins during enterocyte differentiation in adult chicken intestine | Q68925787 | ||
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Myosin VIIB | Q21114070 |
Cadherin related family member 2 | Q21132574 | ||
Cadherin related family member 5 | Q21132576 | ||
Cadherin 1 | Q21171812 | ||
USH1 protein network component harmonin | Q21985204 | ||
Myosin VIIB | Q21989329 | ||
USH1 protein network component harmonin | Q22676875 | ||
intermicrovillar adhesion | Q24459846 | ||
brush border assembly | Q24459847 | ||
P304 | page(s) | 433-446 | |
P577 | publication date | 2014-04-01 | |
P1433 | published in | Cell | Q655814 |
P1476 | title | Intestinal brush border assembly driven by protocadherin-based intermicrovillar adhesion | |
P478 | volume | 157 |
Q90346204 | A Mechanically Weak Extracellular Membrane-Adjacent Domain Induces Dimerization of Protocadherin-15 |
Q28115836 | ANKS4B Is Essential for Intermicrovillar Adhesion Complex Formation |
Q57098797 | Abnormal Small Intestinal Epithelial Microvilli in Patients With Crohn's Disease |
Q48003997 | Apical cytoskeletons and junctional complexes as a combined system in epithelial cell sheets |
Q47894540 | Beyond Cell-Cell Adhesion: Sensational Cadherins for Hearing and Balance. |
Q42364806 | Brush Border Destruction by Enterohemorrhagic Escherichia coli (EHEC): New Insights From Organoid Culture |
Q58599192 | Brush border protocadherin CDHR2 promotes the elongation and maximized packing of microvilli in vivo |
Q90271818 | Chemical chaperone 4-phenylbutyrate prevents hearing loss and cochlear hair cell death in Cdh23erl/erl mutant mice |
Q27323200 | Conserved expression of vertebrate microvillar gene homologs in choanocytes of freshwater sponges |
Q36179417 | Drosophila E-cadherin is required for the maintenance of ring canals anchoring to mechanically withstand tissue growth |
Q42230943 | Dynamics of brush border remodeling induced by enteropathogenic E. coli |
Q36542776 | Enterohemorrhagic Escherichia coli reduce mucus and intermicrovillar bridges in human stem cell-derived colonoids |
Q40206148 | Epigenetic-Mediated Downregulation of μ-Protocadherin in Colorectal Tumours. |
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Q57752430 | IRTKS (BAIAP2L1) Elongates Epithelial Microvilli Using EPS8-Dependent and Independent Mechanisms |
Q47115184 | Loss of cadherin related family member 5 (CDHR5) expression in clear cell renal cell carcinoma is a prognostic marker of disease progression. |
Q91938983 | M Cells: Intelligent Engineering of Mucosal Immune Surveillance |
Q90597384 | Mechanotransduction by PCDH15 Relies on a Novel cis-Dimeric Architecture |
Q90314721 | Membrane mucins of the intestine at a glance |
Q37515120 | MyTH4-FERM myosins have an ancient and conserved role in filopod formation |
Q39005661 | MyTH4-FERM myosins in the assembly and maintenance of actin-based protrusions |
Q40984886 | Myosin 7 and its adaptors link cadherins to actin. |
Q36957296 | Myosin MyTH4-FERM structures highlight important principles of convergent evolution. |
Q42365129 | Myosin-7b Promotes Distal Tip Localization of the Intermicrovillar Adhesion Complex |
Q92475582 | PACSIN2-dependent apical endocytosis regulates the morphology of epithelial microvilli |
Q38720389 | Plasticity of the brush border - the yin and yang of intestinal homeostasis |
Q58545180 | Regulation of actin-based apical structures on epithelial cells |
Q64926136 | Responses of the Differentiated Intestinal Epithelial Cell Line Caco-2 to Infection With the Giardia intestinalis GS Isolate. |
Q48043817 | Rhombic organization of microvilli domains found in a cell model of the human intestine. |
Q39164306 | Role of Polarity Proteins in the Generation and Organization of Apical Surface Protrusions |
Q34566715 | Shaping the intestinal brush border |
Q49403566 | Shear stress induces noncanonical autophagy in intestinal epithelial monolayers. |
Q43058873 | Structure of Myo7b/USH1C complex suggests a general PDZ domain binding mode by MyTH4-FERM myosins. |
Q97418340 | The actin nucleator Cobl organises the terminal web of enterocytes |
Q102059095 | The atypical cadherin MUCDHL antagonizes colon cancer formation and inhibits oncogenic signaling through multiple mechanisms |
Q40249412 | The cell adhesion molecule Fasciclin2 regulates brush border length and organization in Drosophila renal tubules. |
Q49846072 | The congenital tufting enteropathy, or when the intestine is under low cellular tension |
Q90045665 | The roles of glucagon-like peptide-2 and the intestinal epithelial insulin-like growth factor-1 receptor in regulating microvillus length |
Q58690922 | The scaffolding protein ZO-1 coordinates actomyosin and epithelial apical specializations and |
Q90629579 | The small EF-hand protein CALML4 functions as a critical myosin light chain within the intermicrovillar adhesion complex |
Q47144215 | Trafficking Ion Transporters to the Apical Membrane of Polarized Intestinal Enterocytes. |
Q38699493 | Uptake of label-free graphene oxide by Caco-2 cells is dependent on the cell differentiation status |
Q39436141 | Usher syndrome type 1-associated cadherins shape the photoreceptor outer segment. |
Q30389509 | Usher syndrome: Hearing loss, retinal degeneration and associated abnormalities |
Q41739065 | Zebrafish calsyntenins mediate homophilic adhesion through their amino-terminal cadherin repeats |
Q90393039 | Zooming in on Cadherin-23: Structural Diversity and Potential Mechanisms of Inherited Deafness |
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