scholarly article | Q13442814 |
P2093 | author name string | M Adesnik | |
D D Sabatini | |||
I E Ivanov | |||
T A Gottlieb | |||
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Viral glycoproteins destined for apical or basolateral plasma membrane domains traverse the same Golgi apparatus during their intracellular transport in doubly infected Madin-Darby canine kidney cells | Q36210549 | ||
Internalization and degradation of macrophage Fc receptors bound to polyvalent immune complexes | Q36210690 | ||
Membrane-bound and fluid-phase macromolecules enter separate prelysosomal compartments in absorptive cells of suckling rat ileum | Q36211351 | ||
Polarized delivery of viral glycoproteins to the apical and basolateral plasma membranes of Madin-Darby canine kidney cells infected with temperature-sensitive viruses | Q36211738 | ||
Phorbol esters and horseradish peroxidase stimulate pinocytosis and redirect the flow of pinocytosed fluid in macrophages | Q36211893 | ||
Routing of internalized ricin and ricin conjugates to the Golgi complex | Q36214213 | ||
Active target cell processes, possibly involving receptor-mediated endocytosis, are critical for expression of cytotoxicity by natural killer cell-derived cytolytic factor | Q41914927 | ||
Concentration of membrane antigens by forward transport and trapping in neuronal growth cones | Q41988511 | ||
Intracellular routing of transferrin and transferrin receptors in epidermoid carcinoma A431 cells | Q42453407 | ||
Direct proof that the primary site of action of cytochalasin on cell motility processes is actin | Q43108218 | ||
Pathway of vesicular stomatitis virus entry leading to infection | Q43674816 | ||
Cytochalasin B. Dissociation of pinocytosis and phagocytosis by peritoneal macrophages | Q47905157 | ||
Dynamin is a GTPase stimulated to high levels of activity by microtubules | Q48526971 | ||
Ankyrin binding to (Na+ + K+)ATPase and implications for the organization of membrane domains in polarized cells | Q57253842 | ||
Binding of myosin I to membrane lipids | Q59087389 | ||
Plasma membrane protein sorting in epithelial cells: do secretory pathways hold the key? | Q68085679 | ||
Endocytosis of superoxide dismutase is required in order for the enzyme to protect hepatocytes from the cytotoxicity of hydrogen peroxide | Q68275348 | ||
Role of microfilaments in asialoglycoprotein processing in adult and developing liver | Q68573396 | ||
Polymeric immunoglobulin receptor expressed in MDCK cells transcytoses IgA | Q68888831 | ||
Cytochalasin B fails to inhibit pinocytosis by macrophages | Q69007063 | ||
Receptor-mediated endocytosis | Q69875511 | ||
Effects of colchicine on endocytosis of horseradish peroxidase by rat peritoneal macrophages | Q71479942 | ||
Sorting and endocytosis of viral glycoproteins in transfected polarized epithelial cells | Q36214877 | ||
Dynamics of membrane-skeleton (fodrin) organization during development of polarity in Madin-Darby canine kidney epithelial cells | Q36215802 | ||
Microtubule-acting drugs lead to the nonpolarized delivery of the influenza hemagglutinin to the cell surface of polarized Madin-Darby canine kidney cells | Q36215887 | ||
Formation of the apical pole of epithelial (Madin-Darby canine kidney) cells: polarity of an apical protein is independent of tight junctions while segregation of a basolateral marker requires cell-cell interactions | Q36216030 | ||
Biogenesis of the rat hepatocyte plasma membrane in vivo: comparison of the pathways taken by apical and basolateral proteins using subcellular fractionation | Q36217504 | ||
A membrane-cytoskeletal complex containing Na+,K+-ATPase, ankyrin, and fodrin in Madin-Darby canine kidney (MDCK) cells: implications for the biogenesis of epithelial cell polarity | Q36219936 | ||
Effects of cytoplasmic acidification on clathrin lattice morphology | Q36220114 | ||
The 110-kD protein-calmodulin complex of the intestinal microvillus (brush border myosin I) is a mechanoenzyme | Q36220794 | ||
The polarized distribution of an apical cell surface glycoprotein is maintained by interactions with the cytoskeleton of Madin-Darby canine kidney cells | Q36220951 | ||
Selective anchoring in the specific plasma membrane domain: a role in epithelial cell polarity | Q36221176 | ||
Endocytosis in filter-grown Madin-Darby canine kidney cells. | Q36222228 | ||
Identification of a membrane-cytoskeletal complex containing the cell adhesion molecule uvomorulin (E-cadherin), ankyrin, and fodrin in Madin-Darby canine kidney epithelial cells | Q36222601 | ||
Apical membrane aminopeptidase appears at site of cell-cell contact in cultured kidney epithelial cells | Q36398123 | ||
Apical polarity of Na,K-ATPase in retinal pigment epithelium is linked to a reversal of the ankyrin-fodrin submembrane cytoskeleton | Q36529329 | ||
Myosin-I moves actin filaments on a phospholipid substrate: implications for membrane targeting | Q36530778 | ||
Release of simian virus 40 virions from epithelial cells is polarized and occurs without cell lysis | Q36827561 | ||
Expression of herpes simplex virus glycoproteins in polarized epithelial cells | Q36863237 | ||
Gene Transfer: DNA Microinjection Compared with DNA Transfection with a Very High Efficiency | Q36975184 | ||
Molecular links between the cytoskeleton and membranes | Q37188175 | ||
The use of cytochalasins in studies on the molecular biology of virus--host cell interactions | Q37795973 | ||
Endocytosis and transcytosis | Q37828723 | ||
Microtubules, membrane traffic, and cell organization | Q37909287 | ||
Selective modulation of the endocytic uptake of ricin and fluid phase markers without alteration in transferrin endocytosis | Q38341242 | ||
Receptor binding properties of human and animal H1 influenza virus isolates | Q38343153 | ||
Topogenesis of plasma membrane domains in polarized epithelial cells | Q38773123 | ||
Cytoskeleton-associated cell contacts | Q38776715 | ||
The function of the major cytoskeletal components of the brush border | Q38776752 | ||
Redistribution of surface macromolecules in dissociated epithelial cells | Q39408257 | ||
Receptor-mediated endocytosis: concepts emerging from the LDL receptor system | Q39461911 | ||
Intracellular transport using microtubule-based motors | Q39598951 | ||
Rapid stimulation of pinocytosis in human carcinoma cells A-431 by epidermal growth factor | Q40729001 | ||
Inhibition of phagocytosis and plasma membrane mobility of the cultivated macrophage by cytochalasin B. Role of subplasmalemmal microfilaments | Q41182472 | ||
Role of coated vesicles, microfilaments, and calmodulin in receptor-mediated endocytosis by cultured B lymphoblastoid cells | Q41274754 | ||
Transepithelial transport of a viral membrane glycoprotein implanted into the apical plasma membrane of Madin-Darby canine kidney cells. I. Morphological evidence | Q41427887 | ||
Infectious entry pathway of influenza virus in a canine kidney cell line | Q41439180 | ||
Transferrin receptor polarity and recycling accuracy in "tight" and "leaky" strains of Madin-Darby canine kidney cells | Q41513093 | ||
Vesicular stomatitis virus infects and matures only through the basolateral surface of the polarized epithelial cell line, MDCK. | Q41527546 | ||
Acidification of the cytosol inhibits endocytosis from coated pits | Q41531985 | ||
Endocytosis in absorptive cells of cultured human small-intestinal tissue: effect of cytochalasin B and D. | Q41619832 | ||
Mechanism for regulating cell surface distribution of Na+,K(+)-ATPase in polarized epithelial cells | Q41657118 | ||
Novel proteins mediate an interaction between clathrin-coated vesicles and polymerizing actin filaments | Q41721865 | ||
Effects of temperature, metabolic inhibitors and some other factors on fluid-phase and adsorptive pinocytosis by rat peritoneal macrophages | Q41811681 | ||
P433 | issue | 3 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | actin filament | Q329638 |
P1104 | number of pages | 16 | |
P304 | page(s) | 695-710 | |
P577 | publication date | 1993-02-01 | |
P1433 | published in | Journal of Cell Biology | Q1524550 |
P1476 | title | Actin microfilaments play a critical role in endocytosis at the apical but not the basolateral surface of polarized epithelial cells | |
P478 | volume | 120 |
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Q30503955 | Actin dynamics counteract membrane tension during clathrin-mediated endocytosis |
Q27316598 | Actin dynamics regulate multiple endosomal steps during Kaposi's sarcoma-associated herpesvirus entry and trafficking in endothelial cells |
Q38612354 | Actin filaments and microtubules are involved in different membrane traffic pathways that transport sphingolipids to the apical surface of polarized HepG2 cells |
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Q24679320 | Actin- and myosin-driven movement of viruses along filopodia precedes their entry into cells |
Q41298295 | Actin-, myosin- and ubiquitin-dependent endocytosis. |
Q41298458 | Actin-based organelle movement |
Q39581979 | Adenovirus endocytosis requires actin cytoskeleton reorganization mediated by Rho family GTPases. |
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Q38326346 | Cholesterol-dependent lipid assemblies regulate the activity of the ecto-nucleotidase CD39. |
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Q24530597 | Clathrin-dependent endocytosis |
Q36236078 | Clathrin-independent pinocytosis is induced in cells overexpressing a temperature-sensitive mutant of dynamin |
Q28219753 | Clathrin-mediated endocytosis and recycling of the neuron-specific Na+/H+ exchanger NHE5 isoform. Regulation by phosphatidylinositol 3'-kinase and the actin cytoskeleton |
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Q27932391 | Coupling actin dynamics and membrane dynamics during endocytosis |
Q33754190 | Cytochalasin-induced actin disruption of polarized enterocytes can augment internalization of bacteria. |
Q50457959 | Cytomorphological aspects on the response of the branchial heart complex of Sepia officinalis L. (cephalopoda) to xenobiotics and bacterial infection. |
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Q40460164 | Differential role for CD23 splice forms in apical to basolateral transcytosis of IgE/allergen complexes. |
Q52882139 | Differentiation-dependent rearrangements of actin filaments and microtubules hinder apical endocytosis in urothelial cells. |
Q51022775 | Downregulation of the growth hormone-induced Janus kinase 2/signal transducer and activator of transcription 5 signaling pathway requires an intact actin cytoskeleton. |
Q77159598 | Dynamin and its partners: a progress report |
Q99567237 | E7 oncoprotein from human papillomavirus 16 alters claudins expression and the sealing of epithelial tight junctions |
Q27936190 | EH domain proteins Pan1p and End3p are components of a complex that plays a dual role in organization of the cortical actin cytoskeleton and endocytosis in Saccharomyces cerevisiae. |
Q28508355 | EHD2 and the novel EH domain binding protein EHBP1 couple endocytosis to the actin cytoskeleton |
Q36256216 | Effects of regulated expression of mutant RhoA and Rac1 small GTPases on the development of epithelial (MDCK) cell polarity |
Q34190679 | Endocytic traffic in polarized epithelial cells: role of the actin and microtubule cytoskeleton |
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Q28201365 | Endocytosis and the cytoskeleton |
Q41739251 | Endocytosis and transcytosis |
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Q41189088 | Endocytosis of chimeric influenza virus hemagglutinin proteins that lack a cytoplasmic recognition feature for coated pits. |
Q40926086 | Endocytosis of gentamicin in a proximal tubular renal cell line. |
Q41145924 | Endosome dynamics regulated by a Rho protein. |
Q38123993 | Entry of rhabdoviruses into animal cells |
Q38485099 | Entry of the two infectious forms of vaccinia virus at the plasma membane is signaling-dependent for the IMV but not the EEV. |
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Q36245221 | EtpE Binding to DNase X Induces Ehrlichial Entry via CD147 and hnRNP-K Recruitment, Followed by Mobilization of N-WASP and Actin. |
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Q33922577 | Mechanisms of viral transport in the cytoplasm. |
Q52537882 | Microfilament network is needed for the endocytosis of water channels and not for apical membrane insertion upon vasopressin action. |
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