Muscle cell differentiation is associated with increased insulin receptor biosynthesis and messenger RNA levels

scientific article

Muscle cell differentiation is associated with increased insulin receptor biosynthesis and messenger RNA levels is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1172/JCI113858
P932PMC publication ID303661
P698PubMed publication ID2910907
P5875ResearchGate publication ID20245166

P2093author name stringBrunetti A
Goldfine ID
Maddux BA
Wong KY
P2860cites workHybridization of denatured RNA and small DNA fragments transferred to nitrocelluloseQ24611198
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Human insulin receptor and its relationship to the tyrosine kinase family of oncogenesQ28615460
Serial passaging and differentiation of myogenic cells isolated from dystrophic mouse muscleQ29615169
cDNA clone analysis of six co-regulated mRNAs encoding skeletal muscle contractile proteinsQ30450035
Number and evolutionary conservation of alpha- and beta-tubulin and cytoplasmic beta- and gamma-actin genes using specific cloned cDNA probesQ34272920
Multiple controls for the synthesis of muscle-specific proteins in BC3H1 cellsQ36205936
Cytoplasmic processing of myosin heavy chain messenger RNA: evidence provided by using a recombinant DNA plasmidQ36409376
The molecular mechanism of insulin actionQ39494087
The nature and regulation of the insulin receptor: structure and functionQ39494121
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Insulin receptor: structure and functionQ40126024
Insulin secretion and insulin action in non-insulin-dependent diabetes mellitus: which defect is primary?Q40179864
LIlly lecture 1980. Insulin resistance and insulin action. An in vitro and in vivo perspectiveQ40300300
Rsa1 polymorphism at the insulin receptor locus (INSR) on chromosome 19.Q40472802
Characterization of a unique muscle cell lineQ41187169
Stoichiometric translocation of adipocyte insulin receptors from the cell-surface to the cell-interior. Studies using a novel method to rapidly remove detergent and concentrate soluble receptorsQ41917186
Regulation of creatine phosphokinase expression during differentiation of BC3H1 cellsQ43494280
Characterization of actin mRNA levels during BC3H1 cell differentiationQ43862563
Effects of insulin and protein synthesis inhibitors on phospholipid metabolism, diacylglycerol levels, and pyruvate dehydrogenase activity in BC3H-1 cultured myocytesQ44184149
Variation in insulin receptor messenger ribonucleic acid expression in human and rodent tissuesQ44420883
The development of insulin receptors and responses in the differentiating nonfusing muscle cell line BC3H-1.Q44686894
Distinct biologically active receptors for insulin, insulin-like growth factor I, and insulin-like growth factor II in cultured skeletal muscle cells.Q52264155
The development of insulin receptors and responsiveness is an early marker of differentiation in the muscle cell line L6Q68857306
Insulin increases membrane and cytosolic protein kinase C activity in BC3H-1 myocytesQ68936142
Regulation of insulin-receptor mRNA levels by glucocorticoidsQ68989372
Biosynthesis and processing of the human insulin receptorQ69546308
Transcriptional regulation of nicotinic acetylcholine receptor genes during muscle developmentQ69592834
Regulation of Splanchnic and Peripheral Glucose Uptake by Insulin and Hyperglycemia in ManQ70237412
Characterization of cloned rat ribosomal DNA fragmentsQ70552458
Induction of vascular smooth muscle alpha-isoactin expression in BC3H1 cellsQ71275823
Expression of acetylcholine receptor alpha-subunit mRNA during differentiation of the BC3H1 muscle cell lineQ71275844
P433issue1
P407language of work or nameEnglishQ1860
P921main subjectpreproinsulinQ7240673
cell differentiationQ210861
P304page(s)192-198
P577publication date1989-01-01
P1433published inJournal of Clinical InvestigationQ3186904
P1476titleMuscle cell differentiation is associated with increased insulin receptor biosynthesis and messenger RNA levels
P478volume83

Reverse relations

cites work (P2860)
Q52449803A mathematical model and computer simulation study of insulin receptor regulation.
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Q37351427Human diabetes associated with defects in nuclear regulatory proteins for the insulin receptor gene
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Q37712825Towards understanding skeletal muscle regeneration

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