TY - JOUR
T1 - Proinsulin C-peptide elicits disaggregation of insulin resulting in enhanced physiological insulin effects
AU - Johansson, Jan
AU - Alvelius, G
AU - Melles, E
AU - Shafqat, J
AU - Sigmundsson, K
AU - Johansson, BL
AU - Jörnvall, H
AU - Wahren, J
AU - Ekberg, K
AU - Henriksson, M
PY - 2006
Y1 - 2006
N2 - Using surface plasmon resonance (SPR) and electrospray mass spectrometry (ESI-MS), proinsulin C-peptide was found to influence insulin-insulin interactions. In SPR with chip-bound insulin, C-peptide mixed with analyte insulin increased the binding, while alone C-peptide did not. A control peptide with the same residues in random sequence had little effect. In ESI-MS, C-peptide lowered the presence of insulin hexamer. The data suggest that C-peptide promotes insulin disaggregation. Insulin/insulin oligomer mu M dissociation constants were determined. Compatible with these findings, type 1 diabetic patients receiving insulin and C-peptide developed 66% more stimulation of glucose metabolism than when given insulin alone. A role of C-peptide in promoting insulin disaggregation may be important physiologically during exocytosis of pancreatic beta-cell secretory granulae and pharmacologically at insulin injection sites. It is compatible with the normal co-release of C-peptide and insulin and may contribute to the beneficial effect of C-peptide and insulin replacement in type 1 diabetics.
AB - Using surface plasmon resonance (SPR) and electrospray mass spectrometry (ESI-MS), proinsulin C-peptide was found to influence insulin-insulin interactions. In SPR with chip-bound insulin, C-peptide mixed with analyte insulin increased the binding, while alone C-peptide did not. A control peptide with the same residues in random sequence had little effect. In ESI-MS, C-peptide lowered the presence of insulin hexamer. The data suggest that C-peptide promotes insulin disaggregation. Insulin/insulin oligomer mu M dissociation constants were determined. Compatible with these findings, type 1 diabetic patients receiving insulin and C-peptide developed 66% more stimulation of glucose metabolism than when given insulin alone. A role of C-peptide in promoting insulin disaggregation may be important physiologically during exocytosis of pancreatic beta-cell secretory granulae and pharmacologically at insulin injection sites. It is compatible with the normal co-release of C-peptide and insulin and may contribute to the beneficial effect of C-peptide and insulin replacement in type 1 diabetics.
KW - surface plasmon resonance
KW - electrospray ionization mass spectrometry
KW - insulin effect
KW - diabetes type 1
KW - proinsulin C-peptide
KW - insulin disaggregation
KW - insulin hexamer decrease
KW - surface plasmon resonance
KW - electrospray ionization mass spectrometry
KW - insulin effect
KW - diabetes type 1
KW - proinsulin C-peptide
KW - insulin disaggregation
KW - insulin hexamer decrease
UR - https://res.slu.se/id/publ/10600
U2 - 10.1007/s00018-006-6204-6
DO - 10.1007/s00018-006-6204-6
M3 - Journal article
C2 - 16845606
SN - 1420-682X
VL - 63
SP - 1805
EP - 1811
JO - Cellular and Molecular Life Sciences
JF - Cellular and Molecular Life Sciences
IS - 15
ER -