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Biomedical subjects

T Connolly

Publications and source records attributed to T Connolly.

At least 19 recordsLinked to original sources

p21(cip1) rescues human mesenchymal stem cells from apoptosis induced by low-density culture.

Mammalian cells are programmed to undergo programmed cell death in response to a variety of conditions. We demonstrate that human mesenchymal stem cells (hMSCs) undergo programmed cell death upon seeding at low density. Under these conditions, we observed an increased proportion of cells in S-phase and a decreased proportion of cells in G1-phase. This indicated that a change in control of G1-S-phase transition in response to low-density seeding had occurred and, therefore, we measured the level of cyclin-dependent kinase inhibitory proteins governing this transition. Human MSCs cultured at low density exhibited lowered levels of both the p21 and p27 cyclin-dependent kinase inhibitors, and these protein levels appear to be regulated at a post-transcriptional level. Conversely, overexpression of the p21 cell cycle-dependent kinase inhibitor but not that of p27 protected hMSCs from programmed cell death upon culture at low density. Furthermore, p21 and p27 are expressed differentially during endochondrial bone development. The loss of p21 in hypertrophic chondrocytes correlates with the onset of apoptosis during endochondrial ossification. We suggest that p21 and p27 play a central role in skeletal development.

Apoptosis

Reduced folate carrier gene (RFC1) expression and anti-folate resistance in transfected and non-selected cell lines.

Methotrexate transport deficiency due to decreased reduced folate carrier (RFC) activity has been observed in several cell lines selected for resistance to methotrexate (MTX). Since MTX resistance is multifactorial, however, it is difficult to quantify the relative importance of changes in RFC activity in selected cell lines and even more so to determine the relative contribution of naturally occurring RFC activity in the MTX sensitivity of non-selected cell lines. We examined the role of RFC in MTX resistance by studying a transport-deficient cell line transfected with the gene for human RFC, RFC1, and by correlating relative RFC1 expression with MTX and trimetrexate (TMTX) growth inhibition (GI50) in a panel of cell lines used in the NCI Anticancer Drug Screen. Clones of transport-deficient, MTX-resistant ZR-75-1 human breast cancer cells (MTX(R) ZR-75-1) transfected with RFC1 were 250-fold more sensitive to MTX and 300-fold more resistant to TMTX than control cell clones, showing that restoration of RFC activity has a significant impact on MTX and TMTX cytotoxicity. We also surveyed 40 of the 60 cell lines in the NCI drug screen panel for RFCI RNA levels by a quantitative RT-PCR assay. RFCI RNA levels varied over a range of 15-fold, with only 1 cell line found to be null in expression. Using data from the 6-day drug exposure assay, RFC1 correlated positively with MTX and negatively with TMTX cytotoxicity. As predicted by transfection studies, the calculated difference between MTX and TMTX potency was even more strongly correlated with RFC1 RNA levels of the cell lines. In addition, compounds in the NCI Anticancer Drug Screen database with cytotoxicity profiles which correlated with RFC1 RNA levels or with the calculated difference in MTX-TMTX potency were examined for MTX uptake inhibition and cytotoxicity in the RFC1-transfected MTX(R) ZR-75-1 cell line. Overall, our data demonstrate the importance of RFC1 in MTX resistance both as a transgene and as a constitutively expressed gene in non-selected cell lines.

Antineoplastic Agents

Molecular mechanism of antifolate transport-deficiency in a methotrexate-resistant MOLT-3 human leukemia cell line.

Ohnuma et al reported a series of methotrexate-resistant MOLT-3 human T-cell acute lymphoblastic leukemia cell lines that showed decreasing methotrexate (MTX) uptake as the sublines acquired increasing MTX resistance (Cancer Res 45:1815, 1985). The alteration of MTX uptake kinetics in these cells, the intermediately resistant MOLT-3/MTX200 and the highly resistant MOLT-3/MTX10,000 cell lines, was attributed to a change in Vmax for methotrexate transport, without an apparent change in affinity of the transporter for MTX. We studied these cell lines to determine whether alteration of transcription or translation of the recently isolated reduced folate carrier gene (RFC1) was the cause of MTX transport deficiency in these cell lines. Reconstitution of RFC activity in MOLT-3/MTX10,000 cells by transduction with a murine RFC retroviral vector reversed MTX resistance and trimetrexate sensitivity. Although RFC1 RNA levels were unchanged in the resistant cell lines, FACS analysis using a polyclonal anti-RFC1 antibody showed no detectable RFC1 protein in the MOLT-3/MTX10,000 cells. Determination of the nucleotide sequence of RFC1 genes from MOLT-3/MTX10,000 cells revealed that this cell line contained 3 RFC1 alleles: a wild-type allele, an allele containing the premature stop codon at codon 40 and a third allele containing another mutation, which resulted in a premature stop codon at codon 25. We examined the relative expression of these alleles by determining the nucleotide sequence of 24 RFC1 cDNA subclones from MOLT-3/MTX10,000 cells and found that only one-third of these clones contained the wild-type sequence. Determination of the genomic sequence of RFC1 in MOLT-3/ MTX200 cells demonstrated that these cells were heterozygous for a mutation at codon 40, but were homozygous for the wild-type sequence at codon 25. Thus, the acquisition of MTX transport-deficiency in MOLT-3/MTX10,000 cells results from inactivating mutations of RFC1 gene alleles.

Alleles

Regret and Responsibility in the Evaluation of Decision Outcomes

The negative affect associated with bad decision outcomes is often thought to involve feelings of remorse or self-blame. For example, studies showing greater regret associated with active than with passive choice are interpreted as the active chooser piling self-recrimination on top the disappointment of a poor outcome. Corresponding rejoicing is postulated for active choice that leads to good outcomes. The five experiments reported here challenge such a view. In each, hypothetical individuals experienced identical gains or losses, some as a result of their own choice, others as a result of an external, arbitrary process. Though evaluations of final outcomes were heavily influenced by the paths by which the outcomes were reached, and by the comparison levels that were evoked, in no case was decision agency a significant influence. In these experiments, then, the "active chooser" effect appears more a matter of change than of choice, of the route taken rather than whether one is the driver or the passenger. Further research will be needed to establish the circumstances under which different salient comparisons are evoked.

Journal Article

The Cdc2 protein kinase controls Cdc10/Sct1 complex formation.

In the fission yeast Schizosaccharomyces pombe, the execution of Start requires the activity of the Cdc2 protein kinase and the Cdc10/Sct1 transcription complex. The loss of any of these genes leads to G1 arrest and activation of the mating pathway under appropriate conditions. We have undertaken a genetic and biochemical analysis of these genes and their protein products to elucidate the molecular mechanism that governs the regulation of Start. We demonstrate that serine-196 of Cdc10 is phosphorylated in vivo and provide evidence that suggests that phosphorylation of this residue is required for Cdc10 function. Substitution of serine-196 of Cdc10 with alanine (Cdc10 S196A) leads to inactivation of Cdc10. We show that Cdc10 S196A is incapable of associating with Sct1 to form a heteromeric complex, whereas substitution of this serine with aspartic acid (S196D) restores DNA-binding activity by allowing Cdc10 to associate with Sct1. Furthermore, we demonstrate that Cdc2 activity is required for the formation of the heteromeric Sct1/Cdc10 transcription complex and that the Cdc10 S196D mutation alleviates this requirement. We thus provide biochemical evidence to demonstrate one mechanism by which the Cdc2 protein kinase may regulate Start in the fission yeast cell cycle.

CDC2 Protein Kinase

Ran1 functions to control the Cdc10/Sct1 complex through Puc1.

We have undertaken a biochemical analysis of the regulation of the G1/S-phase transition and commitment to the cell cycle in the fission yeast Schizosaccharomyces pombe. The execution of Start requires the activity of the Cdc2 protein kinase and the Sct1/Cdc10 transcription complex. Progression through G1 also requires the Ran1 protein kinase whose inactivation leads to activation of the meiotic pathway under conditions normally inhibitory to this process. We have found that in addition to Cdc2, Sct1/Cdc10 complex formation requires Ran1. We demonstrate that the Puc1 cyclin associates with Ran1 and Cdc10 in vivo and that the Ran1 protein kinase functions to control the association between Puc1 and Cdc10. In addition, we present evidence that the phosphorylation state of Cdc10 is altered upon inactivation of Ran1. These results provide biochemical evidence that demonstrate one mechanism by which the Ran1 protein kinase serves to control cell fate through Cdc10 and Puc1.

Cell Cycle

The influence of psychosocial factors on heart transplantation decisions and outcomes.

In January 1990, a well-established heart transplant program added a psychosocial evaluation procedure to its medical evaluation of potential transplant recipients. To determine the predictive value of psychosocial evaluation for decisions to list patients for a transplant and for ultimate clinical outcomes, we reviewed records of 191 patients who underwent psychosocial evaluation in the subsequent 3 years. Informal prescreening for obvious psychopathology and other disqualifiers almost certainly restricted the ranges of psychosocial factors observed in the sample. Of 120 patients listed, 61 actually received transplants. Psychosocial factors were little used in deciding whether to list the patients and were not predictive of recipients' medical outcome or compliance, but were moderately predictive of complication rates and difficulty of managing patients after transplantation. Although psychosocial evaluation of prescreened potential transplant recipients has little value in predicting medical outcome, it may be useful for planning and scheduling care after transplantation.

Decision Making

Interaction between the Cig1 and Cig2 B-type cyclins in the fission yeast cell cycle.

In this report, we describe the cloning and characterization of a B-type cyclin, Cig2 from the fission yeast Schizosaccharomyces pombe. The cig2 gene encodes a 45-kDa protein that is most similar to a previously identified B-type cyclin in S. pombe, Cdc13. Deletion of cig2 had no observable effect on cell viability or progression through the cell cycle. Strains carrying the cig2 null allele do, however, exhibit an enhanced ability to undergo conjugation relative to a wild-type strain. The cig2 transcript was found to undergo periodic oscillation during the cell cycle, peaking at the G1/S-phase boundary. We have investigated the relationship between Cig2 and the other B-type cyclins, Cig1 and Cdc13, in the fission yeast. We found that cells carrying disruptions of both the cig1 and cig2 genes contain multiple nuclei with a 1C DNA content, suggesting that they are delayed in progression through the G1 phase of the cell cycle. The phenotype of this double mutant suggests that there is a delay in septum formation, possibly as a result of defective nuclear separation.

Amino Acid Sequence

Some contagion models of speeding.

Drivers' decision on whether or not to speed are only partially predicted by attitudes towards speeding, beliefs about the consequences of speeding, and police efforts to enforce speed restrictions. We propose that a significant role may be played by drivers' comparisons of their own speed with that of other, nearby drivers. Such comparisons may lead to self-amplifying, nonintuitive consequences at the aggregate level. We present several simple models of these social contagion processes and demonstrate analytical strategies for tracing their implications. We also present some preliminary data suggesting that significant contagion effects exist. Finally, we outline some promising directions for research on contagion effects, and trace their implications for enforcement efforts.

Automobile Driving

GTP hydrolysis by complexes of the signal recognition particle and the signal recognition particle receptor.

Translocation of proteins across the endoplasmic reticulum membrane is a GTP-dependent process. The signal recognition particle (SRP) and the SRP receptor both contain subunits with GTP binding domains. One GTP-dependent reaction during protein translocation is the SRP receptor-mediated dissociation of SRP from the signal sequence of a nascent polypeptide. Here, we have assayed the SRP and the SRP receptor for GTP binding and hydrolysis activities. GTP hydrolysis by SRP was not detected, so the maximal GTP hydrolysis rate for SRP was estimated to be < 0.002 mol GTP hydrolyzed x mol of SRP-1 x min-1. The intrinsic GTP hydrolysis activity of the SRP receptor ranged between 0.02 and 0.04 mol GTP hydrolyzed x mol of SRP receptor-1 x min-1. A 40-fold enhancement of GTP hydrolysis activity relative to that observed for the SRP receptor alone was obtained when complexes were formed between SRP and the SRP receptor. GTP hydrolysis activity was inhibited by GDP, but not by ATP. Extended incubation of the SRP or the SRP receptor with GTP resulted in substoichiometric quantities of protein-bound ribonucleotide. SRP-SRP receptor complexes engaged in GTP hydrolysis were found to contain a minimum of one bound guanine ribonucleotide per SRP-SRP receptor complex. We conclude that the GTP hydrolysis activity described here is indicative of one of the GTPase cycles that occur during protein translocation across the endoplasmic reticulum.

Animals

The treatment perspectives of physicians, citizens, and state legislators.

This study addresses the dilemma of physicians to act both as an agent of their patients and as an agent of society. We contrasted the perceptions of physicians, citizens at large, and state legislators about 11 topics related to physician decision making regarding the management of care for seriously ill patients. Significant and interpretable differences were found between physicians and citizens, although there were no differences between these two groups and the state legislators. However, even the obtained differences were fewer and smaller than expected. These results suggest that lay, legislative, and medical viewpoints may be less at odds with each other than the literature would suggest, and reaching an accord on at least some aspects of health policy may not be as difficult as generally is assumed.

Adult

Requirement of GTP hydrolysis for dissociation of the signal recognition particle from its receptor.

The signal recognition particle (SRP) directs signal sequence specific targeting of ribosomes to the rough endoplasmic reticulum. Displacement of the SRP from the signal sequence of a nascent polypeptide is a guanosine triphosphate (GTP)-dependent reaction mediated by the membrane-bound SRP receptor. A nonhydrolyzable GTP analog can replace GTP in the signal sequence displacement reaction, but the SRP then fails to dissociate from the membrane. Complexes of the SRP with its receptor containing the nonhydrolyzable analog are incompetent for subsequent rounds of protein translocation. Thus, vectorial targeting of ribosomes to the endoplasmic reticulum is controlled by a GTP hydrolysis cycle that regulates the affinity between the SRP, signal sequences, and the SRP receptor.

Animals

Human D-type cyclin.

A cDNA library prepared from a human glioblastoma cell line has been introduced into a budding yeast strain that lacks CLN1 and CLN2 and is conditionally deficient for CLN3 function. We rescued a gene that we call cyclin D1. It is related to A-, B-, and CLN-type cyclins, but appears to define a new subclass within the cyclin gene family. Transcription of the cyclin D1 gene gives rise to two major transcripts through alternative polyadenylation. The cyclin D1 gene transcript and its 34 kd product are both abundant in the glioblastoma cell line of origin.

Amino Acid Sequence

Pharmacological profiles for rat cortical M1 and M2 muscarinic receptors using selective antagonists: comparison with N1E-115 muscarinic receptors.

We previously showed that M1 and M2 muscarinic receptors in dissociated cells of the adult rat cortex couple to phosphoinositide (Pl) and cyclic AMP (cAMP) metabolism, respectively. To further classify these receptors according to probable subtype, we have employed a group of selective muscarinic antagonists to obtain pharmacological profiles of the cortical M1 and M2 receptors, and to compare them with the muscarinic receptors in N1E-115 cells, which contain M1 receptors mediating cyclic GMP elevation and M4 receptors inhibiting cAMP levels. The M2-mediated inhibition of cAMP levels in cortex was blocked by 4-diphenylacetoxy-N-methyl piperidine methiodide (4-DAMP) with higher potency (0.29 nM) than for reported potency in cardiac tissue (approximately 10 nM), indicating that this cortical response is probably not mediated by the m2 gene product. Similarly, the potency of hexahydrosiladiphenidol (HSD) at the cortical M2 receptor (159 nM) was somewhat greater than the reported potency in cardiac tissue (295 nM). The cardioselective drugs AF-DX 116 and methoctramine blocked the cortical M2 response less potently (135 nM and 229 nM, respectively) than would be expected for involvement of the m2 gene product. Thus, the potencies of AF-DX 116, methoctramine, 4-DAMP and HSD suggest that the cortical M2 response, like the striatal M2 receptor, is mediated by a noncardiac M2 receptor, perhaps by the m4 gene product. This postulate was supported by the significant correlations between cortical and striatal M2 receptors as compared to the M4 receptor in N1E-115 cells (r = 0.92 and 0.99, respectively, P less than .025).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

The signal recognition particle receptor mediates the GTP-dependent displacement of SRP from the signal sequence of the nascent polypeptide.

The signal recognition particle (SRP)-mediated transport of proteins across mammalian endoplasmic reticulum requires GTP in a capacity distinct from polypeptide elongation. We defined the role of GTP by a molecular characterization of translocation intermediates that accumulate after incubation of SRP-ribosome complexes with microsomal membranes. SRP receptor-catalyzed displacement of SRP from ribosomes was GTP-dependent both with intact membranes and with the purified SRP receptor. GTP-specific binding was localized to the alpha subunit of the receptor by photoaffinity labeling and by probing nitrocellulose blots of the receptor with GTP. Analysis of the alpha subunit of the SRP receptor revealed amino acid sequences that are similar to guanine ribonucleotide binding site consensus sequence elements.

Affinity Labels

Ultrastructural analysis of leukocytes recruited into the guinea pig lung by LTB4 aerosol.

Two groups of naive guinea pigs were exposed to different LTB4 aerosol solutions: LTB4/saline and LTB4/BSA. Control animals were exposed to saline alone and saline/BSA. The LTB4/BSA aerosol was the most effective in recruiting leukocytes, with the maximal numbers of cells in the lung tissue at 6 hrs. Light microscopy/TEM revealed marked differences in eosinophil morphology in saline/BSA and LTB4/BSA aerosol treated animals. Occasional eosinophils in the submucosa of controls, had few pseudopodia, few cytoplasmic vesicles, and intact granules. In LTB4 treated animals, there were numerous eosinophils in the bronchial mucosa and submucosa with numerous pseudopodia, numerous cytoplasmic vesicles, and light crystalline cores.

Aerosols

Access of proteinase K to partially translocated nascent polypeptides in intact and detergent-solubilized membranes.

We have used proteinase K as a probe to detect cytoplasmically and luminally exposed segments of nascent polypeptides undergoing transport across mammalian microsomal membranes. A series of translocation intermediates consisting of discrete-sized nascent chains was prepared by including microsomal membranes in cell-free translations of mRNAs lacking termination codons. The truncated mRNAs were derived from preprolactin and the G protein of vesicular stomatitis virus and encoded nascent chains ranging between 64 and 200 amino acid residues long. Partially translocated nascent chains of 100 amino acid residues or less were insensitive to protease digestion from the external surface of the membrane while longer nascent chains were susceptible to digestion by externally added protease. We conclude that the increased protease sensitivity of larger nascent chains is due to the exposure of a segment of the nascent polypeptide on the cytoplasmic face of the membrane. In contrast, low molecular weight nascent chains were remarkably resistant to protease digestion even after detergent solubilization of the membrane. The protease resistant behaviour of detergent solubilized nascent chains could be abolished by release of the polypeptide from the ribosome or by the addition of protein denaturants. We propose that the protease resistance of partially translocated nascent chains can be ascribed to components of the translocation apparatus that remain bound to the nascent chain after detergent solubilization of the membrane.

Biological Transport