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Scholar Results 1 - 10 of about 101 related to Freeman: Deletion of Nicotinamide Nucleotide Transhydrogenase. (0.14 sec) 

Deletion of Nicotinamide Nucleotide Transhydrogenase


HC Freeman, A Hugill, NT Dear, FM Ashcroft, … - Diabetes, 2006 - Am Diabetes Assoc
The C57BL/6J mouse displays glucose intolerance and reduced insulin secretion.
The genetic locus underlying this phenotype was mapped to nicotinamide
nucleotide transhydrogenase (Nnt) on mouse chromosome 13, a nuclear-encoded ...
Related articles - All 2 versions

A New Quantitive Trait Locus Accounting for Glucose Intolerance in C57BL/6J Mice

- eurodiabesity.org [PDF] 
HC Freeman, A Hugill, NT Dear, FM Ashcroft, … - Diabetes, 2006 - Am Diabetes Assoc
The C57BL/6J mouse displays glucose intolerance and reduced insulin secretion.
The genetic locus underlying this phenotype was mapped to nicotinamide
nucleotide transhydrogenase (Nnt) on mouse chromosome 13, a nu- ...
Related articles - All 3 versions

The effect of ablation of the gene for H+-transporting NAD/NADP transhydrogenase on the …


NB Pestov, MI Shakhparonov - Russian Journal of Bioorganic Chemistry, 2009 - Springer
Transhydrogenase is an integral membrane protein. Its molecular weight is
100–110 kDa [1].2 The amino acid sequences of transhydrogenases from various
spe- cies are very conservative. For example, the transhy- drogenases of ...
Related articles

ВЛИЯНИE ДЕЛЕЦИИ ГЕНА H


НБ Пестов, МИ Шахпаронов - Биоорганическая химия, 2009 - maikonline.com
Митохондриальная трансгидрогеназа
катализирует реакцию: + NADP + + NADH = NAD + + NADPH +
Поддержание пула NADPH увеличивает ...
Related articles - Cached

VLIYaNIE DELETsII GENA H


NB Pestov, MI Shakhparonov - Bioorganicheskaya khimiya, 2009 - maikonline.com
Mitokhondrial'naya transgidrogenaza kataliziruet reaktsiyu: + NADP + + NADH =
NAD + + NADPH + Podderzhanie pula NADPH uvelichivaet antioksidantnyi potentsial
mitokhondrii. Poetomu, v sootvetstvii s klassicheskoi svobodnoradikal'noi ...
Related articles - Cached - All 2 versions

Identification of two chromosomal loci determining glucose intolerance in a C57BL/6 mouse …


T Kayo, H Fujita, J Nozaki… - Comparative medicine, 2000 - ncbi.nlm.nih.gov
BACKGROUND AND PURPOSE: Our objective was to map the genes responsible for poor
glucose tolerance in a C57BL/6 (B6) mouse model, which provides a human model of
non-insulin-dependent diabetes mellitus. Insulin secretion was found to be ...
Cited by 16 - Related articles - BL Direct

Rat insulin promoter 2-Cre recombinase mice bred onto a pure C57BL/6J background exhibit …

- endocrinology-journals.org
M Fex, N Wierup, MD Nitert, M Ristow, H … - Journal of Endocrinology, 2007 - Soc Endocrinology
Gene inactivation, using the Cre/LoxP system, is an essential technique in
tissue-specific gene targeting. The rat insulin promoter 2-Cre recombinase
(RIP2-Cre) mouse (also called RIP-Cre or B6.Cg-Tg (Ins2-cre) 25 Mgn/J, ...
Cited by 3 - Related articles - BL Direct - All 2 versions

[PDF] Nicotinamide nucleotide transhydrogenase: a link between insulin secretion, glucose …


H Freeman, K Shimomura, RD Cox, FM … - Biochemical Society Transactions, 2006 - biochemsoctrans.cn
Abstract This paper reviews recent studies on the role of Nnt (nicotinamide
nucleotide transhydrogenase) in insulin secretion and detoxification of ROS
(reactive oxygen species). Glucose-stimulated insulin release from ...
Cited by 10 - Related articles - View as HTML - BL Direct - All 5 versions

Genetic modifiers of the phenotype of mice deficient in mitochondrial superoxide dismutase

- oxfordjournals.org
TT Huang, M Naeemuddin, S Elchuri, M … - Human Molecular Genetics, 2006 - Oxford Univ Press
Sod2–/– mice, which are deficient in the mitochondrial form of superoxide
dismutase (MnSOD), have a short survival time that is strongly affected by
genetic background. This suggests the existence of genetic modifiers that ...
Cited by 20 - Related articles - BL Direct - All 7 versions

A simplified model for mitochondrial ATP production

- psu.edu [PDF] 
R Bertram, M Gram Pedersen, DS Luciani, A … - Journal of theoretical biology, 2006 - Elsevier
Most of the adenosine triphosphate (ATP) synthesized during glucose metabolism
is produced in the mitochondria through oxidative phosphorylation. This is a
complex reaction powered by the proton gradient across the mitochondrial ...
Cited by 14 - Related articles - All 8 versions


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