2013
DOI: 10.1002/pro.2211
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Insulin analog with additional disulfide bond has increased stability and preserved activity

Abstract: Insulin is a key hormone controlling glucose homeostasis. All known vertebrate insulin analogs have a classical structure with three 100% conserved disulfide bonds that are essential for structural stability and thus the function of insulin. It might be hypothesized that an additional disulfide bond may enhance insulin structural stability which would be highly desirable in a pharmaceutical use. To address this hypothesis, we designed insulin with an additional interchain disulfide bond in positions A10/B4 bas… Show more

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Cited by 62 publications
(88 citation statements)
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“…Two classes of insulin analogs have been shown to be refractory to fibrillation: single-chain insulins (SCIs) containing a foreshortened C domain (Fig. 1A) (54) and two-chain insulin analogs containing an engineered non-canonical disulfide bridge between the A and B chains (55) (Fig. 1B).…”
Section: Mechanical Grismentioning
confidence: 99%
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“…Two classes of insulin analogs have been shown to be refractory to fibrillation: single-chain insulins (SCIs) containing a foreshortened C domain (Fig. 1A) (54) and two-chain insulin analogs containing an engineered non-canonical disulfide bridge between the A and B chains (55) (Fig. 1B).…”
Section: Mechanical Grismentioning
confidence: 99%
“…In each case the altered topology (connectivity) of the polypeptide is thought to be incompatible with regular cross-β assembly, the general structural mechanism underlying formation of amyloid (56-58). Although such analogs have not been tested clinically, insertion of a non-canonical cystine is associated in rat studies with anomalously prolonged duration of activity on intravenous bolus injection (55); this would be an unfavorable feature of a pump insulin.…”
Section: Mechanical Grismentioning
confidence: 99%
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“…Among the main conserved residues are a few cysteines that establish intra‐ and inter‐chain disulfide bonds. Disulfide bonds are necessary for the stability and the biological activity of insulin and its related peptides (Vinther et al ., ), and enable them to control a wide range of cellular processes, including nutrient homeostasis and regulation of cell growth and survival in a variety of tissues, as well as aging (Edmondson et al ., ; Fulzele and Clemens, ; Kenyon, ; Werner and Leroith, ). In widely different organisms, cells producing insulin and related peptides have been described as specialized neurons in the nervous system, both central and peripheral, or as endocrine cells that can be either disseminated in various regions of the digestive tract or concentrated in the parenchyma of the pancreas or its evolutionary equivalents.…”
Section: Introductionmentioning
confidence: 99%
“…pointed out that disruption of disulfide bonds usually destabilize the native structure of proteins (Li et al, 2013;Vinther et al, 2013;Zhang et al, 2011b). The value of the m parameter, which is related to the exposure of the protein surface area to the solvent, was comparable for Cygb and Cygb red , whereas a slightly larger value was determined for CNCygb, suggesting an increase in the solvent-exposed surface area for the CN -bound form of Cygb.…”
Section: The Determined Values For Free Energy Of Unfolding (mentioning
confidence: 99%