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Query: UMLS:C0001430 (
adenoma
)
21,222
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Guanylin
is a pro-secretory hormone that is expressed in intestinal epithelia. Previously, we mapped the
guanylin
gene to mouse and human chromosomal regions containing multiple intestinal tumor-modifying loci. Here, we investigate whether
guanylin
expression is downregulated in precancerous human and mouse intestinal adenomas and whether diminished
guanylin
expression increases
adenoma
susceptibility in an animal model of intestinal cancer, the multiple intestinal neoplasia (Min) mouse. In situ hybridization analysis indicated diminished
guanylin
expression in both mouse and human adenomas. Northern analysis of mouse intestinal tissues showed strain-specific levels of
guanylin
expression but no correlation with the resistance or susceptibility of each strain to
adenoma
formation. Similarly, cDNA sequence analysis indicated no inactivating mutations or polymorphisms common to either the high or low
adenoma
-risk groups. Nonetheless, we have shown that significant loss of
guanylin
RNA in adenomas of mouse and human is a marker of intestinal epithelial cell transformation.
...
PMID:Expression of guanylin is downregulated in mouse and human intestinal adenomas. 1087 91
Cystic fibrosis transmembrane conductance regulator (CFTR)-mediated secretion of an electrolyte-rich fluid is a major but incompletely understood function of the salivary glands. We provide molecular evidence that
guanylin
, a bioactive intestinal peptide involved in the CFTR-regulated secretion of electrolyte/water in the gut epithelium, is highly expressed in the human parotid and submandibular glands and in respective clinically most relevant tumors. Moreover, in the same organs we identified expression of the major components of the
guanylin
signaling pathway, ie,
guanylin
-receptor guanylate cyclase-C, cGKII, and CFTR, as well as of the epithelial Cl(-)/HCO(3)(-) anion exchanger type 2 (AE2). At the cellular level,
guanylin
is localized to epithelial cells of the ductal system that, based on its presence in the saliva, is obviously released into the salivary gland ducts. The
guanylin
-receptor guanylate cyclase-C, cGKII, CFTR, and AE2 are all confined exclusively to the apical membrane of the same duct cells. These findings implicate
guanylin
as intrinsic regulator of electrolyte secretion in the salivary glands. We assume that duct epithelial cells synthesize and release
guanylin
into the saliva to regulate electrolyte secretion in the ductal system by an intraductal luminocrine signaling pathway. Moreover, the high expression of
guanylin
in pleomorphic
adenoma
and Warthin tumors (cystadenolymphoma), the most common neoplasms of salivary glands, predicts
guanylin
as a significant marker in tumor pathology.
...
PMID:Guanylin and functional coupling proteins in the human salivary glands and gland tumors : expression, cellular localization, and target membrane domains. 1216 90
Heat-stable enterotoxin (STa), elaborated by enterotoxigenic Echerichia coli, is a worldwide cause of secretory diarrhea in infants and travelers. Both STa and
guanylin
, a peptide structurally similar to STa, increase intracellular cGMP levels after binding to the same intestinal receptor, guanylate cyclase C (GC-C). Distinct from its role as an intestinal secretagogue,
guanylin
may also have a role in intestinal proliferation, as
guanylin
expression is lost in intestinal adenomas. To determine the function of
guanylin
in intestinal epithelia,
guanylin
null mice were generated using a Cre/loxP-based targeting vector.
Guanylin
null mice grew normally, were fertile and showed no signs of malabsorption. However, the levels of cGMP in colonic mucosa of
guanylin
null mice were significantly reduced. The colonic epithelial cell migration rate was increased and increased numbers of colonocytes expressing proliferating cell nuclear antigen (PCNA) were present in crypts of
guanylin
null mice as well. The apoptotic index was similar in
guanylin
null mice and littermate controls. We conclude from these studies that loss of
guanylin
results in increased proliferation of colonic epithelia. We speculate that the increase in colonocyte number is related to decreased levels of cGMP and that this increase in proliferation plays a role in susceptibility to intestinal
adenoma
formation and/or progression.
...
PMID:Targeted inactivation of the mouse guanylin gene results in altered dynamics of colonic epithelial proliferation. 1246 32
Human
guanylin
, coded by the
GUCA2A
gene, is a member of a peptide family that activates intestinal membrane guanylate cyclase, regulating electrolyte and water transport in intestinal and renal epithelia. Deregulation of
guanylin
peptide activity has been associated with colon adenocarcinoma,
adenoma
and intestinal polyps. Besides, it is known that mutations on
guanylin
receptors could be involved in meconium ileus. However, there are no previous works regarding the alterations driven by single nucleotide polymorphisms in
guanylin
peptides. A comprehensive in silico analysis of missense SNPs present in the
GUCA2A
gene was performed taking into account 16 prediction tools in order to select the deleterious variations for further evaluation by molecular dynamics simulations (50 ns). Molecular dynamics data suggest that the three out of five variants (Cys104Arg, Cys112Ser and Cys115Tyr) have undergone structural modifications in terms of flexibility, volume and/or solvation. In addition, two nonsense SNPs were identified, both preventing the formation of disulfide bonds and resulting in the synthesis of truncated proteins. In summary the structural analysis of missense SNPs is important to decrease the number of potential mutations to be in vitro evaluated for associating them with some genetic diseases. In addition, data reported here could lead to a better understanding of structural and functional aspects of
guanylin
peptides.
...
PMID:Computational analyses and prediction of guanylin deleterious SNPs. 2589 74