Dithiothreitol

insulin receptor ; Homo sapiens







14 Article(s)
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1 8024589 Dithiothreitol stimulates insulin receptor autophosphorylation at the juxtamembrane domain. 1994 Jun 30 1
2 8389126 Sulphydryl agents modulate insulin- and epidermal growth factor (EGF)-receptor kinase via reaction with intracellular receptor domains: differential effects on basal versus activated receptors. 1993 May 15 1
3 2039503 Quantitation of the class I disulfides of the insulin receptor. 1991 May 15 1
4 2552266 Unprocessed insulin proreceptor in cultured fibroblasts from a patient with extreme insulin resistance. 1989 Oct 1
5 2669959 Radiation inactivation experiments predict that a large aggregate form of the insulin receptor is a highly active tyrosine-specific protein kinase. 1989 May 30 2
6 3316225 Insulin-dependent intermolecular subunit communication between isolated alpha beta heterodimeric insulin receptor complexes. 1987 Dec 5 2
7 3597378 The insulin receptor. Structural basis for high affinity ligand binding. 1987 Jun 15 1
8 3007126 Characterization of phosphatidylinositol kinase activity associated with the insulin receptor. 1986 Mar 3 1
9 3019388 Alteration of intramolecular disulfides in insulin receptor/kinase by insulin and dithiothreitol: insulin potentiates the apparent dithiothreitol-dependent subunit reduction of insulin receptor. 1986 Jul 29 6
10 3026445 Dithiothreitol activation of the insulin receptor/kinase does not involve subunit dissociation of the native alpha 2 beta 2 insulin receptor subunit complex. 1986 Nov 4 5
11 2412229 The monomeric alpha beta form of the insulin receptor exhibits much higher insulin-dependent tyrosine-specific protein kinase activity than the intact alpha 2 beta 2 form of the receptor. 1985 Sep 1
12 4084284 Urea treatment allows dithiothreitol to release the binding subunit of the insulin receptor from the cell membrane: implications for the structural organization of the insulin receptor. 1985 Dec 17 2
13 6693383 Characterization of purified insulin receptor subunits. 1984 Jan 25 1
14 7045094 Role of disulfides in the subunit structure of the insulin receptor. Reduction of class I disulfides does not impair transmembrane signalling. 1982 Jun 25 1