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SLC38A3 wt Allele
Known as:
SN1
, G17
, SNAT3
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Human SLC38A3 wild-type allele is located in the vicinity of 3p21.31 and is approximately 16 kb in length. This allele, which encodes sodium-coupled…
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National Institutes of Health
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Related topics
Related topics
3 relations
Homo sapiens
Ligand Binding
Molecular Transport
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
Review
2013
Review
2013
Evolutionary origin of amino acid transporter families SLC32, SLC36 and SLC38 and physiological, pathological and therapeutic aspects.
H. Schiöth
,
Sahar Roshanbin
,
M. Hägglund
,
R. Fredriksson
Molecular Aspects of Medicine
2013
Corpus ID: 206760036
Highly Cited
2009
Highly Cited
2009
THE IMPLICATIONS OF A HIGH COSMIC-RAY IONIZATION RATE IN DIFFUSE INTERSTELLAR CLOUDS
N. Indriolo
,
Brian Fields
,
B. J. McCall
2009
Corpus ID: 1384899
Diffuse interstellar clouds show large abundances of H+3 which can only be maintained by a high ionization rate of H2. Cosmic…
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Highly Cited
2009
Highly Cited
2009
Potassium restriction, high protein intake, and metabolic acidosis increase expression of the glutamine transporter SNAT3 (Slc38a3) in mouse kidney.
S. Busque
,
C. Wagner
AJP - Renal Physiology
2009
Corpus ID: 1715029
Kidneys produce ammonium to buffer and excrete acids through metabolism of glutamine. Expression of the glutamine transporter…
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Highly Cited
2008
Highly Cited
2008
Genome-wide gene expression profiling reveals renal genes regulated during metabolic acidosis.
M. Nowik
,
M. Lecca
,
A. Velic
,
H. Rehrauer
,
A. Brändli
,
C. Wagner
Physiological Genomics
2008
Corpus ID: 23936078
Production and excretion of acids are balanced to maintain systemic acid-base homeostasis. During metabolic acidosis (MA) excess…
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Highly Cited
2007
Highly Cited
2007
Regulation of renal amino acid transporters during metabolic acidosis.
Caroline Moret
,
M. Dave
,
Nicole Schulz
,
Jean X. Jiang
,
F. Verrey
,
C. Wagner
AJP - Renal Physiology
2007
Corpus ID: 6056347
The kidney plays a major role in acid-base homeostasis by adapting the excretion of acid equivalents to dietary intake and…
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Review
2006
Review
2006
The glutamine commute: Lost in the tube?
F. Conti
,
M. Melone
Neurochemistry International
2006
Corpus ID: 28321571
2005
2005
Differential Regulation of Amino Acid Transporter SNAT3 by Insulin in Hepatocytes*
S. Gu
,
Carla J Villegas
,
Jean X. Jiang
Journal of Biological Chemistry
2005
Corpus ID: 5048971
The liver is a metabolism and transfer center of amino acids as well as the prime target organ of insulin. In this report, we…
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Highly Cited
2002
Highly Cited
2002
Cell‐specific expression of the glutamine transporter SN1 suggests differences in dependence on the glutamine cycle
J. Boulland
,
K. Osen
,
+4 authors
F. Chaudhry
European Journal of Neuroscience
2002
Corpus ID: 7797280
Glutamine is involved in a variety of metabolic processes, including recycling of the neurotransmitters glutamate and…
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Highly Cited
1989
Highly Cited
1989
Effects of prenatal exposure to ethanol on neocortical development: II. Cell proliferation in the ventricular and subventricular zones of the rat
Michael W. Miller
The Journal of comparative neurology
1989
Corpus ID: 22100416
Prenatal exposure to ethanol alters the generation of neocortical neurons; ethanol reduces the numbers of neurons generated…
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Highly Cited
1984
Highly Cited
1984
Similar acid stimulatory potencies of synthetic human big and little gastrins in man.
V. Eysselein
,
V. Maxwell
,
T. Reedy
,
E. Wünsch
,
J. Walsh
Journal of Clinical Investigation
1984
Corpus ID: 9243396
A newly synthesized human big gastrin (G34) that was prepared according to the revised structure and that contained less than 3…
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