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Biomedical subjects

D Shields

Publications and source records attributed to D Shields.

At least 19 recordsLinked to original sources

Günter Blobel--still passionate after all these years.

UNLABELLED: What one word best describes Günter Blobel? ANSWER: passion. Almost all of the nearly 200 investigators who have worked in the Blobel laboratory in the past quarter century would describe him as highly enthusiastic, intense and, above all, passionate. Whether it was in the early days of the signal hypothesis, the initial characterization of nuclear pores and lamina or his more recent foray into rebuilding the historic German City of Dresden, Günter attacks every project with unbridled passion, intensity, boundless energy and determination.

Cell Nucleus↗

Intracellular localization of phospholipase D1 in mammalian cells.

Phospholipase D (PLD) hydrolyzes phosphatidylcholine to generate phosphatidic acid. In mammalian cells this reaction has been implicated in the recruitment of coatomer to Golgi membranes and release of nascent secretory vesicles from the trans-Golgi network. These observations suggest that PLD is associated with the Golgi complex; however, to date, because of its low abundance, the intracellular localization of PLD has been characterized only indirectly through overexpression of chimeric proteins. We have used highly sensitive antibodies to PLD1 together with immunofluorescence and immunogold electron microscopy as well as cell fractionation to identify the intracellular localization of endogenous PLD1 in several cell types. Although PLD1 had a diffuse staining pattern, it was enriched significantly in the Golgi apparatus and was also present in cell nuclei. On fragmentation of the Golgi apparatus by treatment with nocodazole, PLD1 closely associated with membrane fragments, whereas after inhibition of PA synthesis, PLD1 dissociated from the membranes. Overexpression of an hemagglutinin-tagged form of PLD1 resulted in displacement of the endogenous enzyme from its perinuclear localization to large vesicular structures. Surprisingly, when the Golgi apparatus collapsed in response to brefeldin A, the nuclear localization of PLD1 was enhanced significantly. Our data show that the intracellular localization of PLD1 is consistent with a role in vesicle trafficking from the Golgi apparatus and suggest that it also functions in the cell nucleus.

Amino Acid Sequence↗

Inhibition of phosphatidic acid synthesis alters the structure of the Golgi apparatus and inhibits secretion in endocrine cells.

In mammalian cells, activation of a Golgi-associated phospholipase D by ADP-ribosylation factor results in the hydrolysis of phosphatidylcholine to form phosphatidic acid (PA). This reaction stimulates the release of nascent secretory vesicles from the trans-Golgi network of endocrine cells. To understand the role of PA in mediating secretion, we have exploited the transphosphatidylation activity of phospholipase D. Rat anterior pituitary GH3 cells, which secrete growth hormone and prolactin, were treated with 1-butanol resulting in the synthesis of phosphatidylbutanol rather than PA. Under these conditions transport from the ER through the Golgi apparatus and secretion of polypeptide hormones were inhibited quantitatively. Furthermore, the in vitro synthesis of phosphatidylinositol 4,5-bisphosphate (PtdIns(4,5)P(2)) by Golgi membranes was inhibited quantitatively. Most significantly, in the presence of 1-butanol the architecture of the Golgi apparatus was disrupted, resulting in its disassembly and fragmentation. Removal of the alcohol resulted in the rapid restoration of Golgi structure and secretion of growth hormone and prolactin. Our results suggest that PA stimulation of PtdIns(4,5)P(2) synthesis is required for maintaining the structural integrity and function of the Golgi apparatus.

1-Butanol↗

Raised plasma homocysteine as a risk factor for retinal vascular occlusive disease.

BACKGROUND/AIMS: A moderately elevated plasma concentration of the sulphur amino acid homocysteine is an independent risk factor for atherosclerotic vascular disease. Many of the risk factors associated with coronary, cerebral, and peripheral atherosclerotic vascular disease are common to retinal vascular occlusive disease but it is unclear whether elevated plasma concentrations of homocysteine are also associated with such disease. This study assessed the relation between retinal vascular occlusive disease and elevated levels of plasma total homocysteine (tHcy). METHODS: A retrospective case-control study involving hospital based controls and cases with retinal artery, central retinal vein (including hemiretinal vein), and branch retinal vein occlusions was performed. The relation between elevated tHcy, defined as a level greater than or equal to 12 micromol/l and risk of retinal vascular occlusive disease was examined. RESULTS: 87 cases of retinal vascular occlusive disease including 26 cases of retinal artery occlusion, 40 cases with central retinal vein occlusion, and 21 cases of branch retinal vein occlusion were compared with 87 age matched controls. Mean tHcy levels were higher in all disease groups and this difference was significant in patients with retinal artery occlusions (p= 0.032) and patients with central retinal vein occlusion (p=0.0001). When adjusted for known cardiovascular risk factors, tHcy was an independent risk factor for retinal vascular occlusive disease (OR 2.85 (95% CI 1.43-5.68)). CONCLUSIONS: Elevated tHcy is an independent risk factor for retinal vascular occlusive disease. Assessment of tHcy may be important in the investigation and management of patients with retinal vascular occlusive disease.

Aged↗

Serum amyloid A in the assessment of early inflammatory arthritis.

OBJECTIVE: Acute phase serum amyloid A (A-SAA) has been reported to be more sensitive than C-reactive protein (CRP) as a marker of disease activity. It may function in immune regulation and is linked to the development of secondary amyloidosis. We investigated the profile of A-SAA in early inflammatory arthritis and compared A-SAA with CRP and erythrocyte sedimentation rate (ESR) in relation to diagnosis and disease activity. METHODS: Using a sensitive and specific ELISA, A-SAA was measured in the serum of 140 patients with early arthritis (disease duration 2 weeks to 24 mo, mean 6 mo). CRP was determined using a standard ELISA; ESR and clinical disease activity variables were also recorded. RESULTS: Sixty-four patients had rheumatoid arthritis (RA), 19 psoriatic arthritis (PsA), 28 undifferentiated arthritis (UA), and 29 other forms of arthritis. A-SAA levels correlated with both CRP (r = 0.73, p = 0.0001) and ESR (r = 0.6, p = 0.0001). The magnitude of the A-SAA response was greater than either the CRP or ESR, and very high A-SAA levels were observed in disease as early as 2 weeks. Highest A-SAA concentrations occurred in RA (median 70.3 mg/l, maximum 1542) compared with the other groups (medians, PsA: 33 mg/l; UA: 12.3 mg/l; other arthritis: 11.2 mg/l), with values > 520 mg/l observed exclusively in RA. A-SAA, unlike CRP or ESR, could distinguish patients with a final diagnosis of RA from those who had persistent UA. In RA, A-SAA provided the strongest correlations with clinical measurements of disease activity. Clinical improvement was also best represented by A-SAA, while disease deterioration was associated with a significant increase in A-SAA values, but not CRP or ESR. CONCLUSION: Compared with ESR or CRP, A-SAA correlates best with markers of disease activity, and in patients with recent onset arthritis, very high levels of SAA occur exclusively in RA. As A-SAA is sensitive to change and accurately reflects alterations in disease status, it is the best marker available for the assessment of inflammatory joint disease.

Adolescent↗

Biosynthesis and packaging of carboxypeptidase D into nascent secretory vesicles in pituitary cell lines.

Metallocarboxypeptidase D (CPD) is a membrane-bound trans-Golgi network (TGN) protein. In AtT-20 cells, CPD is initially produced as a 170-kDa endoglycosidase H-sensitive glycoprotein. Within 30 min of chase, the CPD increases to 180 kDa and is resistant to endoglycosidase H as a result of carbohydrate maturation. CPD also undergoes an activation step required for binding to a substrate affinity resin. Blocking the protein exit from the endoplasmic reticulum inhibits the increase in molecular mass but not the step required for affinity column binding, suggesting that enzyme activation precedes carbohydrate maturation and that these reactions occur in distinct intracellular compartments. Only the higher molecular weight mature CPD enters nascent secretory vesicles, which bud from the TGN of permeabilized AtT-20 and GH3 cells. The budding efficiency of CPD into vesicles is 2-3-fold lower than that of endogenous proopiomelanocortin in AtT-20 cells or prolactin in GH3 cells. In contrast, the packaging of a truncated form of CPD, which lacks the cytoplasmic tail and transmembrane domain, was similar to that of proopiomelanocortin. Taken together, the results support the proposal that CPD functions in the TGN in the processing of proteins that transit the secretory pathway and that the C-terminal region plays a major role in TGN retention.

Animals↗

Disease models provide insights into post-golgi protein trafficking, localization and processing.

Over the past two years, the use of in vitro systems and the identification of autoantibodies to Golgi proteins have provided important new tools for analyzing vesicle and cargo trafficking in the distal secretory pathway. In addition, the phenotypic characterization of mice with knockouts of various prohormone convertases has led to significant progress in understanding the biological relevance of prohormone processing in post-Golgi compartments.

Animals↗

Pseudoautosomal gene: possible association with bipolar males but not with schizophrenia.

The phenomenon of anticipation has been demonstrated in several neuropsychiatric disorders and suggested for schizophrenia and bipolar affective disorder. Many conditions exhibiting anticipation have been shown to be caused by trinucleotide repeat (CAG/CTG) expansions. Some evidence suggests that these expansions also exist in individuals with schizophrenia and bipolar affective disorder. In this investigation, we analysed a polymorphic CAG repeat in the interleukin receptor gene (IL9R), mapped to the pseudoautosomal region Xq28 and Yq21 (a candidate region for schizophrenia and affective disorder). Two common alleles, differing by one repeat unit and two rare alleles were found in cases and controls. Allele frequencies of this repeat were investigated in Irish schizophrenic, bipolar disorder and ethnically matched control samples. We found no evidence of an increased frequency of larger CAG repeats in either the schizophrenic or bipolar affective disorder samples as a whole when compared to the controls. However, dividing the samples by sex demonstrated a significant association between bipolar affective disorder males and the larger allele (allele 2) (patients 54.8% vs controls 40.1%, chi2 = 6.7, P = 0.009). In addition, a decreased frequency of this allele has been observed in the female patients, but did not attain statistical significance (patients 37% vs controls 46%, chi2 = 2.1, P = 0.14). This provides preliminary evidence that this locus or a closely mapped DNA variant (in linkage disequilibrium with the CAG repeat) may be involved in the genetic susceptibility to bipolar affective disorder in males.

Bipolar Disorder↗

Temperature-induced conformational changes in prosomatostatin-II: implications for processing.

Somatostatin (SRIF) is a 14-residue peptide hormone synthesized in the hypothalamus and pancreatic islets. SRIF-14 and an N-terminally extended form, SRIF-28, are generated by the proteolytic processing of an approx. 102-residue precursor prosomatostatin (proSRIF) at a single set of paired basic residues (Arg-Lys) and at a monobasic (Arg) site respectively. Previous work in our laboratory demonstrated that the propeptide of SRIF mediates intracellular sorting; we suggested that this information resides in the prohormone structure. To identify putative sorting domains we have investigated structural features of recombinant anglerfish proSRIF-II purified from Escherichia coli. Two species of proSRIF-II were obtained: a monomeric form and a disulphide-linked dimer. CD analyses revealed that monomeric proSRIF-II lacks appreciable periodic secondary structure; however, on slow heating (2 degrees C/min) and cooling, it assumed a predominantly alpha-helical conformation. When subjected to a second heating-and-cooling cycle, the alpha-helical conformation was maintained. In contrast, the dimeric form of proSRIF-II was predominantly alpha-helical and its helicity did not increase in response to heating and recooling. Our results suggest that proSRIF-II might exist in several different folding intermediate states.

Amino Acid Sequence↗

Secretory vesicle budding from the trans-Golgi network is mediated by phosphatidic acid levels.

Phospholipid metabolism plays a central role in regulating vesicular traffic in the secretory pathway. In mammalian cells, activation of a Golgi-associated phospholipase D activity by ADP-ribosylation factor results in hydrolysis of phosphatidylcholine to phosphatidic acid (PA). This reaction has been proposed to stimulate nascent secretory vesicle budding from the trans-Golgi network. It is unclear whether PA itself or diacylglycerol (DAG), a metabolite implicated in yeast secretory vesicle formation, regulates budding. To distinguish between these possibilities we have used a permeabilized cell system supplemented with phospholipid-modifying enzymes that generate either DAG or PA. The data demonstrate that in mammalian cells accumulation of PA rather than DAG is a key step in regulating budding of secretory vesicles from the trans-Golgi network.

Animals↗

The use of permeabilized cells to investigate secretory granule biogenesis.

To investigate the mechanism of secretory granule biogenesis in endocrine cells, our laboratory used rat anterior pituitary GH3 cells which secrete growth hormone and prolactin. Here we describe a simple and rapid procedure for generating permeabilized cells to dissect molecular mechanisms involved in nascent secretory vesicle budding from the trans-Golgi network (TGN). Using this system, we demonstrate that vesicle budding is temperature, energy, and cytosol dependent; in addition, cytosol from a variety of cells, including yeast (Saccharomyces cerevisiae), can support vesicle release. The budding of nascent secretory vesicles from the TGN is stimulated by a phospholipase D activity that is associated with Golgi membranes. Our results suggest that phospholipid metabolism plays an important role in the release of nascent secretory vesicles from the TGN.

ADP-Ribosylation Factors↗

Phospholipase D stimulates release of nascent secretory vesicles from the trans-Golgi network.

Phospholipase D (PLD) is a phospholipid hydrolyzing enzyme whose activation has been implicated in mediating signal transduction pathways, cell growth, and membrane trafficking in mammalian cells. Several laboratories have demonstrated that small GTP-binding proteins including ADP-ribosylation factor (ARF) can stimulate PLD activity in vitro and an ARF-activated PLD activity has been found in Golgi membranes. Since ARF-1 has also been shown to enhance release of nascent secretory vesicles from the TGN of endocrine cells, we hypothesized that this reaction occurred via PLD activation. Using a permeabilized cell system derived from growth hormone and prolactin-secreting pituitary GH3 cells, we demonstrate that immunoaffinity-purified human PLD1 stimulated nascent secretory vesicle budding from the TGN approximately twofold. In contrast, a similarly purified but enzymatically inactive mutant form of PLD1, designated Lys898Arg, had no effect on vesicle budding when added to the permeabilized cells. The release of nascent secretory vesicles from the TGN was sensitive to 1% 1-butanol, a concentration that inhibited PLD-catalyzed formation of phosphatidic acid. Furthermore, ARF-1 stimulated endogenous PLD activity in Golgi membranes approximately threefold and this activation correlated with its enhancement of vesicle budding. Our results suggest that ARF regulation of PLD activity plays an important role in the release of nascent secretory vesicles from the TGN.

1-Butanol↗