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1 he processing of the physiological substrate proglucagon.
2 also increased intestinal gene expression of proglucagon, a precursor of proteins that promote insuli
3  evaluate nutrient regulation of small bowel proglucagon and derived peptides, we evaluated the effec
4 tter characterize the sites of production of proglucagon and GLP-I in the small intestine and evaluat
5 articipates in the processing of proinsulin, proglucagon, and a variety of other neuroendocrine precu
6 om alternate splicing of a common precursor, proglucagon by PC2 and PC1, respectively.
7   Taken together, these results suggest that proglucagon cleavage has a greater dependence on PC2 act
8 rily by the distal gut, although the role of proglucagon-derived glucagon-like peptide I (GLP-I) as a
9 e peptide 2 (GLP-2) is a nutrient-dependent, proglucagon-derived gut hormone that stimulates intestin
10 on-like peptide-2 (GLP-2) is a 33-amino-acid proglucagon-derived peptide secreted from enteroendocrin
11 ficient mice after the administration of the proglucagon-derived peptides (PGDPs) glucagon-like pepti
12 ed for nutrient-regulated secretion of these proglucagon-derived peptides.
13 how that FXR activation in L cells decreases proglucagon expression by interfering with the glucose-r
14 s involved in pancreatic alpha-cell-specific proglucagon expression, we found that the POU domain tra
15 teral nutrient intake stimulates small bowel proglucagon expression; this effect is greater in jejunu
16 sing of proglucagon into glicentin and major proglucagon fragment and cleaved major proglucagon fragm
17 major proglucagon fragment and cleaved major proglucagon fragment to release GLP-1 and tGLP-1, simila
18            Surprisingly, glicentin and major proglucagon fragment were sorted with different efficien
19 er initial processing to glicentin and major proglucagon fragment, leading to the hypothesis that sor
20                    Peptides derived from pre-proglucagon (GCG peptides) act in both the periphery and
21      GLP-1 is produced by cells that express proglucagon (GCG); however, the stimuli that activate GC
22  lines, TCF7L2 controls transcription of the proglucagon gene (gcg), which encodes the incretin hormo
23 oglycemia is in part associated with reduced proglucagon gene expression and glycogenolysis that resu
24 ith the BAS colesevelam increases intestinal proglucagon gene expression and improves glycaemia in a
25  reveal that brain 4 is a major regulator of proglucagon gene expression by its interaction with the
26 l and hepatic lipid metabolism and defective proglucagon gene expression contribute to hypoglycemia i
27 orrelated with a 70% reduction in pancreatic proglucagon gene expression.
28                        The expression of the proglucagon gene has been demonstrated to be regulated b
29 romoter results in ectopic expression of the proglucagon gene in insulin-expressing pancreatic beta c
30                                          The proglucagon gene is expressed in a highly restricted tis
31              Cell-specific expression of the proglucagon gene is mediated by proteins that interact w
32  mechanism by which the transcription of the proglucagon gene is regulated in response to cAMP signal
33 NF3alpha could bind to and transactivate the proglucagon gene promoter.
34 ing cells that bind to the G1 element of the proglucagon gene proximal promoter.
35 es indicate the presence of large amounts of proglucagon in atypical appearing secretory granules in
36 ne transcription may explain the presence of proglucagon in certain areas of the brain as well as in
37  examined the biosynthesis and processing of proglucagon in isolated islets from these mice via pulse
38               The differential processing of proglucagon in pancreatic alpha-cells and intestinal L c
39 ceride (LCT) for 24 h on local expression of proglucagon in proximal and distal small bowel.
40 C1-6 cells, it accelerated the processing of proglucagon into glicentin and major proglucagon fragmen
41             Our previous work suggested that proglucagon is directed into granules by intrinsic sorti
42                                              Proglucagon is expressed in pancreatic alpha cells, inte
43 t efficiencies, thus providing evidence that proglucagon is first sorted to granules prior to process
44                                              Proglucagon is processed to glucagon and glucagon-like p
45                                   Intestinal proglucagon is thought to be synthesized primarily by th
46 o efficiently cleave the interdomain site in proglucagon (KR 70-71).
47 ered prodomains, the sorting determinants of proglucagon lie within the ordered hormone domains of gl
48                                          The proglucagon-like hormones glucagon-like peptide 1 and 2
49 ileum, fasting resulted in a 20% decrease in proglucagon mRNA (P < 0.005); in contrast to jejunum, re
50                                              Proglucagon mRNA abundance and cellular localization wer
51                                  In jejunum, proglucagon mRNA abundance decreased by 40% with fasting
52 id not result in a significant rise in ileal proglucagon mRNA abundance from fasting values.
53                           Diacetyl decreased proglucagon mRNA and total GLP-1 from glucose stimulated
54 ection significantly increased expression of proglucagon mRNA in colon.
55  develop normally in HNF-3alpha-/- mice, but proglucagon mRNA levels are reduced 50%.
56              In jejunum, signal intensity of proglucagon mRNA per cell, determined by in situ hybridi
57 gon and GLP-I levels correlated with jejunal proglucagon mRNA.
58 des (GLP-1 and GLP-2) are processed from the proglucagon polypeptide and secreted in equimolar amount
59  peptide (GLP)-1 are the primary products of proglucagon processing from the pancreas and gut, respec
60 er pituitary or pancreatic alpha cell lines, proglucagon processing was preferentially decreased when
61 on factor brain 4 is abundantly expressed in proglucagon-producing islet cell lines and rat pancreati
62 pressing a fluorescent protein driven by the proglucagon promoter.
63 f ATF3 and ATF3b on the CRE/ATF motif of the proglucagon promoter.
64 als expressing Cre recombinase under the pre-proglucagon promoter.
65                            The processing of proglucagon, prosomatostatin, and proinsulin in the alph
66 with morphological evidence of high rates of proglucagon secretion in PC2 null islets.
67 unal infusion of LCT increased expression of proglucagon to a greater extent in jejunum than in ileum
68 2, convert proinsulin to insulin and convert proglucagon to glucagon and glucagon-like peptide 1 (GLP
69 , islet proinsulin to insulin and intestinal proglucagon to glucagon-like peptide-1 and -2.
70 plays an essential role in the processing of proglucagon to mature active glucagon in pancreatic alph
71  mice via pulse-chase labeling and find that proglucagon undergoes essentially no processing in chase
72   Surprisingly, when proopiomelanocortin and proglucagon were co-expressed in either pituitary or pan
73                Tissue-specific processing of proglucagon yields three major peptide hormones as follo

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