| Literature DB >> 21270251 |
Young Lee1, May-Yun Wang, Xiu Quan Du, Maureen J Charron, Roger H Unger.
Abstract
OBJECTIVE: To determine the role of glucagon action in the metabolic phenotype of untreated insulin deficiency. RESEARCH DESIGN AND METHODS: We compared pertinent clinical and metabolic parameters in glucagon receptor-null (Gcgr(-/-)) mice and wild-type (Gcgr(+/+)) controls after equivalent destruction of β-cells. We used a double dose of streptozotocin to maximize β-cell destruction.Entities:
Mesh:
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Year: 2011 PMID: 21270251 PMCID: PMC3028337 DOI: 10.2337/db10-0426
Source DB: PubMed Journal: Diabetes ISSN: 0012-1797 Impact factor: 9.461
Comparison residual insulin production in nonfasting Gcgr+/+ and Gcgr−/− mice treated with STZ (n = 6)
| Nondiabetic | STZ-diabetic | |||
|---|---|---|---|---|
| Gcgr+/+ | Gcgr−/− | STZ Gcgr+/+ | STZ Gcgr−/− | |
| β-cell area (μm2) | 23,279 ± 5,614 | 15,760 ± 1,413 | 1,548 ± 132 | 1,618 ± 147 |
| α-cell area (μm2) | 4,431 ± 873 | 27,825 ± 4,358 | 44,927 ± 5.488 | 17,4081 ± 26,103 |
| Plasma insulin (ng/mL) | 1.86 ± 0.11 | 1.82 ± 0.16 | 0.19 ± 0.15 | 0.21 ± 0.07 |
| Preproinsulin (AU) | 0.106 ± 0.0081 | 0.215 ± 0.0530 | undetectable | undetectable |
Data are means ± SEM.
*P < 0.05.
AU, arbitrary unit.
FIG. 1.A: Comparison of plasma glucagon levels in Gcgr+/+ (■) and Gcgr−/− (□) mice before and 6 weeks after STZ induction of β-cell destruction. B: Glucagon in Gcgr+/+ mice before and after STZ. C: Representative immunoblots for CREB and P-CREB in livers of Gcgr+/+ (■) and Gcgr−/− (□) mice after β-cell destruction by treatment with STZ and in untreated controls (upper panel). The P-CREB/CREB ratio in densitometric units in six Gcgr+/+ (■) and six Gcgr−/− (□) mice after β-cell destruction by treatment with STZ (lower panel).
FIG. 2.A: Comparison of food intake in nondiabetic and STZ-treated Gcgr+/+ (■) and Gcgr−/− (□) mice (n = 6). B: Comparison of body weight in Gcgr+/+ (■) and Gcgr−/− (□) before and after STZ induction of β-cell destruction. C: Comparisons of weekly nonfasting glucose levels in Gcgr+/+ (●) and Gcgr−/− (□) after STZ-induced β-cell destruction, and overnight fasting glucose levels for Gcgr+/+ (♦) and Gcgr−/− (◇) at the end of the study (n = 6). D: Glucose values for oral glucose tolerance test (OGTT) (2 g/kg) performed after a 16-h fast in normal Gcgr+/+ (●), Gcgr−/− (☐), and STZ-treated Gcgr−/− (▲) mice (n = 4). E: Insulin levels for OGTT in normal Gcgr+/+ (●), Gcgr−/− (☐), and STZ-treated Gcgr−/− (▲) mice (n = 4).
FIG. 3.Comparison of fasting (▨) and nonfasting FFAs () (A) and nonfasting β-OH butyrate levels (B) in STZ-treated Gcgr+/+ (■) and Gcgr−/− (□) mice and untreated controls (N = 6).
FIG. 4.Comparison of the ratio of PEPCK mRNA to 36B4 mRNA (A) and plasma lactate levels (B) in STZ-treated Gcgr+/+ (■) and Gcgr−/− (□) mice (N = 6).
Liver amino acid levels (μM) in Gcgr+/+ and Gcgr−/− mice
| Normal | Insulin deficiency | |||
|---|---|---|---|---|
| Gcgr+/+ | Gcgr−/− | Gcgr+/+ STZ | Gcgr−/− STZ | |
| Ala | 246.10 ± 51.36 | 487.51 ± 58.13 | 359.31 ± 123.78 | 327.45 ± 42.27 |
| Ser | 145.86 ± 4.77 | 232.16 ± 11.87 | 158.80 ± 14.46 | 195.02 ± 9.07 |
| Glx | 232.33 ± 30.40 | 554.39 ± 62.84 | 308.27 ± 30.97 | 526.43 ± 23.00 |
| Pro | 21.64 ± 2.01 | 30.59 ± 1.32 | 30.54 ± 5.47 | 25.79 ± 0.100 |
| Phe | 20.01 ± 0.91 | 26.48 ± 1.86 | 26.88 ± 4.59 | 30.42 ± 1.44 |
| Asx | 53.63 ± 8.73 | 115.39 ± 10.78 | 51.81 ± 4.62 | 55.76 ± 4.95 |
| Met | 7.97 ± 0.35 | 12.33 ± 0.64 | 9.05 ± 1.44 | 10.79 ± 0.53 |
| Arg | 5.12 ± 0.22 | 15.19 ± 2.25 | 9.33 ± 3.09 | 16.75 ± 1.02 |
| Orn | 27.31 ± 1.50 | 73.22 ± 43.79 | 74.97 ± 11.22 | 64.05 ± 8.75 |
Data are means ± SEM. Ala, alanine; Arg, arginine; Asx, aspartic acid and asparagines; Glx, glutamic acid and glutamine; Met, methionine; Orn, ornithine; Phe, phenylalanine; Pro, proline; Ser, serine.
Gcgr+/+ vs. Gcgr−/−; *P < 0.01.
Gcgr+/+ STZ vs. Gcgr−/− STZ; †P < 0.001.
Gcgr−/− vs. Gcgr−/− STZ; ‡P < 0.05.