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D C Whitcomb

Publications and source records attributed to D C Whitcomb.

At least 37 records · Page 2Linked to original sources

SPINK1/PSTI mutations are associated with tropical pancreatitis in Bangladesh. A preliminary report.

BACKGROUND/AIMS: Tropical pancreatitis (TP) refers to a severe type of idiopathic chronic pancreatitis that develops in children in tropical regions of Africa and southern Asia. Phenotypically TP is subdivided into fibrocalculous pancreatic diabetes (FCPD) and tropical calcific pancreatitis without diabetes mellitus (TCP). Recently an association was identified between idiopathic pancreatitis in the USA and Europe and mutations in the serine protease inhibitor, Kazal type 1 (SPINK1) gene (previously termed pancreatic secretory trypsin inhibitor, PSTI). Our aim was to determine if either form of TP has a genetic basis. METHODS: We studied 8 well-characterized patients from Bangladesh with FCPD, 4 with TCP and 4 controls without pancreatic disease. The entire SPINK1 gene was sequenced in these patients. RESULTS: We detected two disease-associated SPINK1 mutations (N34S/IVS1 - 37T > C and IVS3 + 2T > C) in 6 of 8 patients from Bangladesh with FCPD but not in 4 patients with TCP (p < 0.03) or 4 controls (p < 0.03). CONCLUSIONS: We conclude that SPINK1 mutations are associated with FCPD in Bangladesh. Since SPINK1 mutations in Europeans and North Americans are associated with idiopathic chronic pancreatitis that is phenotypically different from FCPD, we further conclude that mutated SPINK1 markedly increases the risk of developing a variety of pancreatic diseases possibly through a chronic elevation of active trypsin within the pancreas.

Adult↗

Hereditary pancreatitis in North America: the Pittsburgh-Midwest Multi-Center Pancreatic Study Group Study.

BACKGROUND: Hereditary pancreatitis (HP) was defined on a clinical basis alone until the first cationic trypsinogen gene (PRSS1) mutation was discovered through the initial phase of the current Pittsburgh Midwest Multi-Center Pancreatic Study Group (MMPSG) HP study in 1996, making genetic testing available. AIM: To evaluate the regional distribution of HP in the United States, and to compare the study's gene mutation database with the pedigree databases to determine whether family history alone predicts the likelihood of detecting mutations in the cationic trypsinogen gene. METHODS: Probands of families with HP, familial pancreatitis and idiopathic chronic pancreatitis were recruited through referrals from MMPSG collaborating centers, other physicians and self-referral of patients who had learned of the study through the World Wide Web (www.pancreas.org). Pedigrees were constructed, detailed questionnaires were completed and a blood sample was drawn for each proband and participating family members. The birthplace and current location of each patient was recorded, DNA was analyzed for known mutations and the pattern of phenotype inheritance was determined from analysis of each pedigree. RESULTS: A total of 717 individuals were ascertained; 368 (51%) had clinical pancreatitis confirmed and the rest were primarily unaffected family members used for linkage studies. Forty-six clinically unaffected individuals were silent mutation carriers (11% of mutation-positive individuals). HP was most common in Minnesota, New York and the central mid-Atlantic states plus Kentucky and Ohio. One hundred and fifteen of 150 kindreds fulfilled the strict definition of an HP family, and 60 (52%) had PRSS1 mutations. Of the families with a detected mutation, 11% did not fulfill the clinical definition of an HP kindred. CONCLUSIONS: The distribution of HP within the United States shows major regional differences. The etiology of HP can be identified in a small majority of HP families through genetic testing. However, family history alone is not a good predictor of finding a mutation in the cationic trypsinogen (PRSS1) gene.

Databases, Factual↗

SPINK1 mutations are associated with multiple phenotypes.

Mutations in the gene encoding for the pancreatic secretory trypsin inhibitor or serine protease inhibitor, Kazal type I (SPINK1) have been associated with different entities of chronic pancreatitis. While there is no doubt about the involvement of SPINK1 mutations in pancreatic inflammatory disease, much controversy has arisen regarding which alterations are associated with disease and what type of disease model should be applied when the SPINK1 gene is examined. This article presents the existing data on SPINK1 mutations in idiopathic chronic pancreatitis, familial pancreatitis, hereditary pancreatitis and tropical pancreatitis. The possible role of SPINK1 mutations and polymorphisms in pancreatic disease is discussed.

Humans↗

Hereditary pancreatitis: a model for understanding the genetic basis of acute and chronic pancreatitis.

Progress in understanding pancreatic diseases has been limited by a number of factors. Primary problems include the absence of good animal models, and difficulty in understanding the origin of pancreatic disease since the disease is usually manifest by the progressive destruction of the gland itself. Beginning in 1995, our laboratory, with the support of the Midwest Multicenter Pancreatic Study Group, began investigating the genetic basis of hereditary pancreatitis. Utilization of information becoming available through the human genome project allowed us to map and identify the hereditary pancreatitis gene as cationic trypsinogen (PRSS1). Molecular modeling, and subsequent experimental evidence, has solved key elements of the mysteries surrounding the origin of acute pancreatitis and the progression of acute pancreatitis to chronic pancreatitis. The availability of new genetic information and genomic tools should produce a revolution in our understanding of pancreatic diseases.

Acute Disease↗

Lessons from hereditary pancreatitis.

For decades there has been slow progress in understanding pancreatic diseases, particularly acute and chronic pancreatitis. As a result, there were no significant advances in the management of these patients. Treatment was mostly directed towards symptomatic relief and management of complications. A simple clinical observation that multiple members of a large family are affected by acute and chronic pancreatitis, some at very young age and in the absence of any alcohol use, led physician-scientists of the Midwest Multicenter Pancreatic Study Group (investigators from the University of Cincinnati, University of Kentucky, and University of Pittsburgh) to investigate the genetic basis of hereditary pancreatitis. Using information from the human genome project, the hereditary pancreatitis gene was identified as the cationic trypsinogen gene (protease serine 1, PRSS1). This discovery has led to the identification of a number of other genes and their products playing role in the pathogenesis of acute and chronic pancreatitis. In the emerging picture of pathogenesis of acute and chronic pancreatitis, trypsin appears to play a central role. This newly acquired knowledge is setting the stage for new preventive and management strategies for hereditary and sporadic acute and chronic pancreatitis.

Acute Disease↗

Up-regulation of prostaglandin EP4 receptor messenger RNA in fetal rabbit skin wound.

BACKGROUND: Scar formation and subglottic stenosis often cause health problems in surgical otolaryngology. However, fetal wounds demonstrate scarless healing. The underlying mechanism remains poorly understood. We isolated differentially expressed genes by comparison between nonwounded with wounded skin of fetal and adult rabbits. METHODS: Skin incisional wounds were made in fetal (21 to 23 days' gestation) and adult rabbits. Nonwounded and wounded skin were harvested 12 hours after surgery. Total RNA was extracted. By means of messenger RNA differential display, differentially expressed complementary DNA fragments were isolated, cloned, and sequenced. The expressed transcripts were verified by reverse RNA dot blot and semiquantitative reverse transcription and polymerase chain reaction. RESULTS: One complementary DNA tag that was induced in fetal skin wounds and repressed in adult skin wounds was isolated. The sequence of this complementary DNA (352 base pairs) encodes the messenger RNA for the E-prostanoid (EP) 4 receptor for prostaglandin E(2) (PGE(2)). The truly differential expression of the transcript was confirmed. In normal skin, the EP4 receptor messenger RNA levels were higher in adults than in fetuses. Twelve hours after wounding, the EP4 receptor transcript was remarkably induced in fetal skin wounds but repressed in adult skin wounds. CONCLUSIONS: Our study demonstrates the differential expression of the EP4 receptor messenger RNA in fetal and adult skin before and 12 hours after wounding. Our results suggest that prostaglandin E(2) is involved in the differential cellular responses and in the regulation of the intracellular signal transduction through its binding to EP4 receptor during fetal wound repair.

Animals↗

RNA differential display of scarless wound healing in fetal rabbit indicates downregulation of a CCT chaperonin subunit and upregulation of a glycophorin-like gene transcript.

BACKGROUND/PURPOSE: Scars form as wounds heal in adult organisms. In addition to disrupting cosmetic appearance, scar tissue can cause significant morbidity, and even death if it blocks vital organ function. Previous work has established that fetal wounds, especially in early to midgestation, can heal without scarring. Because such inherent physiological mechanisms ultimately are under genetic control, a study was initiated to elucidate the differences in gene expression that produce scarless wound healing in the mammalian fetus but scarring in postnatal wounds. Reverse transcription polymerase chain reaction (RT-PCR) differential display (DD) was used to detect differentially expressed mRNA transcripts in a rabbit model of wound healing. METHODS: Adult and 21-day fetal full-thickness rabbit skin specimens from wounded and unwounded sites were harvested 12 hours postwounding. RNA extracted from the tissue was used as a template in DD reactions using anchoring and random primers to generate tissue-specific gene expression fingerprints. The over 2,000 resulting amplimers (gene transcripts) were screened for differential expression among the 4 types of specimens: fetal control (unwounded), fetal wound, adult control, and adult wound. Selected bands distinctly upregulated or downregulated in fetal wound lanes on the DD gels were excised, and the cDNA was extracted, reamplified, cloned into vectors, and sequenced. DD results were confirmed by limiting-dilution RT-PCR using sequence-specific primers. RESULTS: Differential display (DD) showed 22 amplimers that were significantly upregulated in all fetal wound samples as compared with little or no expression in fetal control, adult control, or adult wound tissues. Conversely, 5 transcripts were downregulated in the fetal wound specimens but highly expressed in the 3 comparison tissues. Reamplification of selected transcripts by PCR, followed by cloning and DNA sequencing, yielded 7 distinct sequences, each representing a gene expressed differently in fetal wound than in the other 3 tissues. A transcript that was downregulated in fetal wound showed very high sequence homology to part of the human gene for the eta subunit of the hetero-oligomeric particle CCT (the chaperonin containing T-complex polypeptide 1 or TCP-1). An upregulated amplimer showed significant DNA sequence homology to glycophorins A and B. One sequence was identified as 28S rRNA. The remaining 4 candidate sequences showed no significant homology to known genes, but 1 had high homology to expressed sequence tags of unknown function. CONCLUSIONS: With careful experimental design and proper controls and verifications, differential display of RNA expression is a potentially powerful method of finding genes that specifically regulate a particular physiological process such as fetal wound healing. No a priori knowledge of what genes might be involved, or why, is necessary. This study indicates that downregulation of a gene that codes for a chaperonin subunit and upregulation of several other genes may be involved in the striking scarless character of wound healing in the mammalian fetus. Results suggest the hypothesis that downregulation of the CCT chaperonin in fetal wound may inhibit the formation of myofibroblasts, a cell type that correlates highly with scarring in postnatal wound healing, by preventing the folding of sufficient alpha-smooth muscle actin to form the stress fibers characteristic of these cells.

Amino Acid Sequence↗

Genetic predispositions to acute and chronic pancreatitis.

Advances in molecular genetics have provided the powerful tools necessary to identify the key molecules and mechanisms that underly the disease process. Continued work in this area promises to reveal new insights as new disease genes are discovered. This article focuses on the insights into the cause of acute and chronic pancreatitis gained by investigation of the HP genes, the diagnosis of the known mutations, the fascinating observation of nonpenetrance, and a look at future directions.

Acute Disease↗

Risk factors for cancer in hereditary pancreatitis. International Hereditary Pancreatitis Study Group.

Hereditary pancreatitis is a rare form of pancreatitis, accounting for approximately 1% of all types of pancreatitis. It is inherited as an autosomal dominant disease, with incomplete penetrance. The genetic defect is believed to be caused by mutations in the trypsinogen gene. Patients who inherit the disorder suffer from a form of pancreatitis that resembles other types of pancreatitis, but the age of onset is much earlier. Sixteen biopsy-proven pancreatic cancers have developed in a cohort of 412 patients with a median follow-up period of 18 years (interquartile range, 7 to 30 years) since the onset of symptoms. Compared with the background population, the risk of pancreatic cancer is approximately 50 to 60 times greater than expected. Smoking appears to be an additional risk factor in these patients: Smoking increases the risk of developing pancreatic cancer and lowers the age of onset by approximately 20 years. Patients with hereditary pancreatitis are urged to avoid smoking because it greatly increases the risk of pancreatic cancer and to avoid alcohol, a known risk factor for all forms of pancreatitis.

Adolescent↗

PYY regulates pancreatic exocrine secretion through multiple receptors in the awake rat.

Peptide YY (PYY) is one of several regulatory peptides reported to modulate pancreatic secretion. PYY circulates in two forms, PYY1-36 and PYY3-36, and binds to multiple receptor subtypes. We sought to determine if PYY1-36 or PYY3-36 regulates neurally mediated pancreatic secretion through the Y1, Y2, and/or Y5 receptor subtypes. Experiments were conducted in awake, surgically recovered rats. In order to determine the effects of the PYYs on basal pancreatic secretion, either PYY1-36, [Pro34] PYY1-36 (a Y1/Y5 agonist), or PYY3-36 (a Y2/Y5 agonist) were infused for 40 min at doses of 0, 12.5, 25, or 50 pmol/kg/hr while measuring pancreatic juice volume and protein. PYY1-36 increased pancreatic protein secretion at 25 and 50 pmol/kg/hr (P < 0.05) in a dose-dependent manner (P < 0.001, R2 = 0.990). The Y2/Y5 receptor agonist PYY3-36 significantly inhibited pancreatic juice volume and protein at 12.5 and 25 pmol/kg/hr, but stimulated protein secretion at higher doses (P < 0.001, R2 = 0.995). The Y1/Y5 agonist, [Pro34] PYY1-36, had no significant effect on basal pancreatic exocrine secretion. Therefore, PYY1-36, PYY3-36 and [Pro34] PYY1-36 produced different, dose-dependent changes on basal pancreatic exocrine secretion. Inhibition of pancreatic secretion by circulating PYY1-36 and PYY3-36 are primarily mediated by the Y2 receptor. Since [Pro34] PYY1-36 did not change pancreatic secretion, it can be concluded that circulating PYY1-36 or PYY3-36 does not modulate pancreatic secretion through the Y1 or Y5 receptors. Since the stimulatory effects of PYY1-36 on pancreatic secretion could not be explained by the actions of PYY3-36 or [Pro34] PYY1-36 on Y1 or Y2 receptors, and since PYY1-36 fails to bind to Y3 or Y4 receptors, we also conclude that PYY1-36 may stimulate pancreatic secretion in a dose-dependent mechanism through a PYY receptor subtype different from Y1, Y2, Y3, Y4 or Y5.

Animals↗

SPINK1/PSTI polymorphisms act as disease modifiers in familial and idiopathic chronic pancreatitis.

BACKGROUND & AIMS: Gain-of-function trypsin mutations cause acute pancreatitis and chronic pancreatitis. Loss of trypsin inhibitor function may have similar effects. We investigated the prevalence of SPINK1 (PSTI) mutations in familial pancreatitis, idiopathic chronic pancreatitis, and controls. METHODS: Genetic-linkage studies were performed in 5 familial pancreatitis families. The entire SPINK1 gene was sequenced in 112 affected individuals and 95 control DNA samples, and exon 3 was sequenced in 95 additional controls. X-ray crystallography-based model building and statistical studies were performed. RESULTS: Significant linkage between pancreatitis and 5q31.1-2 was excluded. Novel SPINK1 mutations, one D50E mutation, one IVS3+125 C>A, and five IVS3+184 T>A intronic polymorphisms were identified. The N34S and P55S mutations were observed in 29 of 112 patients (25%) as N34S/N34S (n = 7), N34S/wt (n = 19), N34S/P55S (n = 2), and N34S/D50E (n = 1). Three hundred eighty control alleles revealed 3 N34S (0.77%), 2 P55S (0.53%), and no D50E mutations. Age of disease onset and severity were similar between homozygous and heterozygous patients. Structural modeling revealed several possible pathophysiologic mechanisms for the N34S mutation. CONCLUSIONS: SPINK1 mutations are common in the population (approximately 2%), but are clearly associated with pancreatitis. The mutation-associated risk is low. Modeling and familial clustering suggest that SPINK1 mutations are disease modifying, possibly by lowering the threshold for pancreatitis from other genetic or environmental factors, but by themselves do not cause disease.

Amino Acid Sequence↗

Acute pancreatitis.

Acute pancreatitis is a process that continues to interest physicians and research scientists. Understanding potential factors initiating acute pancreatitis, mechanisms regulating the local and distant inflammatory response, methods for accurately predicting outcome, and possible therapeutic interventions continue to be investigated. Current interest in inflammatory response of the acute injury focuses on proinflammatory and anti-inflammatory cytokines as markers for disease severity and predictors of outcome. Recent studies confirm the utility of physical examination and existing markers such as C-reactive protein and interleukin-6 in predicting the severity of acute pancreatitis. Understanding the molecular mechanism of lung injury remains a major focus for future therapeutic targets, since pancreatitis-associated pulmonary injury results in significant morbidity and is a major indication for intensive care unit admissions.

Journal Article↗

Effects of exercise training on gallbladder function in an obese female population.

PURPOSE: Aerobic exercise may influence gallstone disease pathogenesis through its effect on gallbladder motility. The purpose of this investigation was to examine the effects of exercise training on gallbladder emptying in obese women. METHODS: Twenty-seven obese subjects were randomized into one of two groups: exercise (E) (five 45-min brisk walking sessions per week at 75.2 +/- 0.5% of maximum heart rate) and controls (C). Gallbladder function via cholescintigraphy, cardiorespiratory fitness, and body composition were measured in all subjects before and after a 12-wk intervention period. In each cholescintigraphy trial subjects ingested an 8-oz liquid meal 45 min after injection of 99mTc disofenin to promote gallbladder emptying. Gallbladder areas were then scanned for 60 s and then every 5 min for 60 min. RESULTS: VO2max increased significantly by 9% for E when compared with that for C (P < 0.001). Within E postprandial gallbladder ejection fraction (EF) increased significantly after training (39.5 +/- 4.9% to 54.7 +/- 6.5%, P < 0.05); however, this 15.2% increase in EF was not significantly greater than the change reported in the controls. CONCLUSIONS: Results indicate that 12 wk of moderate exercise training does improve cardiorespiratory fitness but does not significantly effect gallbladder emptying in obese women.

Adult↗