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Prolific S-layer shedding and associated proteins from the methanotroph <i>Methylomicrobium album</i> BG8. [PDF]

open access: yesAppl Environ Microbiol
Hermary MK   +7 more
europepmc   +1 more source

Structural and functional dissection of ASCT2 interaction with Syncytin-1 mediating cell-cell fusion

open access: yes
Slotboom D   +10 more
europepmc   +1 more source
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Mammalian Amino Acid Transport System y + Revisited: Specificity and Cation Dependence of the Interaction with Neutral Amino Acids

Journal of Membrane Biology, 1999
A reevaluation of the specificity of system y+, the classical transporter for cationic amino acids is presented. System y+ has been defined as a transporter for cationic amino acids that binds neutral amino acids with lower affinity in the presence of Na+.
A M, Rojas, R, Devés
openaire   +2 more sources

Plasma membrane clustering of system y+ (CAT-1) amino acid transporter as detected by immunohistochemistry

American Journal of Physiology-Endocrinology and Metabolism, 1994
Transport of cationic amino acids in fully differentiated mammalian cells is mediated primarily by system y1+ [cationic amino acid transporter (CAT)-1 gene product]. Antibodies, prepared against synthetic peptide sequences predicted to be extracellular loops of the CAT-1 transporter protein, detected the transporter on the surface of cultured cells. In
M H, Woodard   +7 more
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Identification of the Cationic Amino Acid Transporter (System y+) of the Rat Blood‐Brain Barrier

Journal of Neurochemistry, 1993
Abstract: Cationic amino acids are transported from blood into brain by a saturable carrier at the blood‐brain barrier (BBB). The transport properties of this carrier were examined in the rat using an in situ brain perfusion technique. Influx into brain via this system was found to be sodium independent and followed Michaelis‐Men‐ten kinetics with ...
J, Stoll, K C, Wadhwani, Q R, Smith
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Amino acid transport system y+L of human erythrocytes: Specificity and cation dependence of the translocation step

The Journal of Membrane Biology, 1994
The transport specificity of system y+L of human erythrocytes was investigated and the carrier was found to accept a wide range of amino acids as substrates. Relative rates of entry for various amino acids were estimated from their trans-effects on the unidirectional efflux of L-[14C]-lysine.
S, Angelo, R, Devés
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Cationic amino acid transport through system y+L in erythrocytes of patients with lysinuric protein intolerance

Pflügers Archiv, 2000
We test the hypothesis that lysinuric protein intolerance (LPI), a rare autosomal recessive defect of cationic amino acid transport, results from the absence of the recently described y+L amino acid transporter. We compare fluxes of lysine (1 microM) into erythrocytes of normal subjects with those of patients homozygous for the LPI mutation.
BOYD CA   +4 more
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Y+- and L-system amino acid transport in normal and chronic lymphocytic leukemia lymphocytes: Photoinhibition by fluoronitrophenylazide

Archives of Biochemistry and Biophysics, 1985
Three major pathways mediate amino acid transport into mammalian cells: the A-system and the ASC-system, which require a sodium gradient across the plasma membrane, and the L-system, which has no requirement for a sodium gradient. We have found that the lymphocytes from patients with B-cell chronic lymphocytic leukemia (CLL) have a marked reduction in ...
G B, Segel, A M, Tometsko, M A, Lichtman
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Structural insights into the human system y+L amino acid transporter complex

Structure
System y+L facilitates the sodium-independent transport of cationic and sodium-dependent transport of neutral amino acids via heteromeric amino acid transporters. System y+L consists of either SLC7A6 (y+LAT2) or SLC7A7 (y+LAT1) and 4F2hc (SLC3A2). The y+LAT2-4F2hc complex mediates the exchange of L-lysine (Lys), L-arginine (Arg), L-leucine (Leu), and L-
Lu Dai   +9 more
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