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Full-Text Articles in Entire DC Network
Role Of Syndecan-1 As Key Regulator Of Multiple Myeloma Pathogenesis, Yekaterina Borisovna Khotskaya
Role Of Syndecan-1 As Key Regulator Of Multiple Myeloma Pathogenesis, Yekaterina Borisovna Khotskaya
All ETDs from UAB
Syndecan-1 (CD138), a transmembrane heparan sulfate-bearing proteoglycan, is expressed at high levels on most myeloma cells and is shed into the microenvironment. In patients, high levels of serum syndecan-1 are indicative of poor prognosis and elevation of shed syndecan-1 in animal models dramatically enhances tumor growth, angiogenesis and metastasis. Because syndecan-1 is a key regulator of myeloma pathogenesis, we hypothesized that reduction of syndecan-1 levels expressed by the myeloma cells will block their growth and dissemination. Syndecan-1 knockout and knockdown variants of two human myeloma cell lines, CAG and RPMI-8226, were developed using short hairpin RNA (shRNA) technology. In vitro, …
Impact Of Genetic And Epigenetic Variability In Response To Two Test Drugs 5-Fluorouracil And Lansoprazole, Adam Michael Lee
Impact Of Genetic And Epigenetic Variability In Response To Two Test Drugs 5-Fluorouracil And Lansoprazole, Adam Michael Lee
All ETDs from UAB
Pharmacogenetics has proven to be an invaluable tool in predicting variability in drug response; however, there are numerous incidences where genetics cannot fully explain interindividual drug variability. Other factors, such as the epigenetic mechanism of DNA methylation, may offer an alternate explanation. Therefore, this dissertation focuses on both genetic and epigenetic regulation in order to gain a better understanding of the molecular basis behind drug response variability. Initial investigations focused on the antineoplastic agent 5-Fluorouracil (5-FU), which can produce severe toxicity in patients with deficiency in dihydropyrimidine dehydrogenase (DPD). Genotypic studies have identified >32 sequence variants in the DPYD gene; …
Oxidative Stress-Stimulated Vascular Calcification, Chang Hyun Byon
Oxidative Stress-Stimulated Vascular Calcification, Chang Hyun Byon
All ETDs from UAB
Oxidative stress plays a critical role in pathogenesis of atherosclerosis. However, the effect of oxidative stress-induced molecular signaling in development of vascular calcification, a feature of advanced atherosclerosis, has not been defined. Osteogenic differentiation of vascular smooth muscle cells (VSMC) is critical in development of vascular calcification. We determined hydrogen peroxide (H2O2)-induced oxidative stress promoted a phenotypic switch of mouse primary VSMC from contractile to osteogenic phenotype. This effect was associated with increased expression and transactivity of Runx2, a key transcription factor for osteogenic differentiation. Inhibition of Runx2 using short hairpin RNA blocked oxidative stress-induced VSMC calcification. By contrast, adenovirus-mediated …
Oncostatin M-Induced Gene Expression And Regulation In Astrocytes And Microglia, Brandi Janece Baker
Oncostatin M-Induced Gene Expression And Regulation In Astrocytes And Microglia, Brandi Janece Baker
All ETDs from UAB
Astrocytes and microglia are specialized glial cells of the Central Nervous System (CNS) that modulate neural activity and regulate immunological and inflammatory events. These cells perform their functions, in part, through the secretion of soluble mediators such as cytokines and chemokines. However, in response to the same neurological insult or inflammatory stimuli, the responses of these cells can vary greatly. This notion of differential responses was examined in our studies using Oncostatin M (OSM). OSM is a member of the IL-6 family of cytokines, which can be produced by microglia, astrocytes, neurons, and infiltrating leukocytes in the CNS, and is …
Intracellular Trafficking Of The Hantaviral Nucleocapsid Protein And Its Function In Modulation Of Immune Signaling, Steven Joe Ontiveros
Intracellular Trafficking Of The Hantaviral Nucleocapsid Protein And Its Function In Modulation Of Immune Signaling, Steven Joe Ontiveros
All ETDs from UAB
Old World and New World hantaviruses, family Bunyaviridae, mature intracellularly within cellular compartments. Although it is generally accepted they assemble and bud in the Golgi apparatus the site remains controversial for New World hantaviruses, because some studies have raised the possibility of their maturation at the plasma membrane. Furthermore, the site of assembly hantaviruses still remains undetermined. The nucleocapsid (N) protein has been proposed to play a key role in facilitating assembly. To gain insight into the assembly pathways of Old World hantaviruses, we examine the intracellular trafficking of the Hantaan (HTN) virus N protein. We show progressive redistribution of …
Involvement Of Reactive Oxygen Species In The Acute Development Of Insulin Resistance Following Trauma And Hemorrhage, Lidong Zhai
Involvement Of Reactive Oxygen Species In The Acute Development Of Insulin Resistance Following Trauma And Hemorrhage, Lidong Zhai
All ETDs from UAB
Hyperglycemia develops in the intensive care unit in many patients following injury, infection and critical illness. However, little is known about the mechanism of acute development of insulin resistance that causes this hyperglycemia, even though reducing or normalizing the elevated glucose levels has become a major therapeutic target in many ICUs. Using rodent models of injury, acute hepatic insulin resistance occurs within minutes and continues for at least several hours even following fluid resuscitation. We have previously reported that TNF-alpha; is necessary for the hepatic insulin resistance in the rat following resuscitation. However, whether TNF-alpha; plays a role in the …
The Effects Of Bisphenol A (Bpa) On Erbb2-Positive Breast Cancer, Sarah Jenkins
The Effects Of Bisphenol A (Bpa) On Erbb2-Positive Breast Cancer, Sarah Jenkins
All ETDs from UAB
Bisphenol A (BPA) is a synthetically made compound used to produce a myriad of consumer goods. Recent studies have shown BPA to leach from these products in appreciable amounts, resulting in nearly ubiquitous exposure. In this study, we assessed whether chronic administration to a range of low concentrations of BPA could accelerate spontaneously developing mammary cancer using a transgenic model that over-expresses wild type ErbB2/neu transgene (MMTV-erbB2). MMTV-erbB2 mice were provided drinking water containing 0 (control), 2.5 (BPA 2.5), 25 (BPA 25), 250 (BPA 250), or 2500 (BPA 2500) µg BPA/L from eight weeks of age until sacrifice. This range …
Structural And Functional Studies On Heat Shock Protein Hsp40-Hdj1 And Golgi Er Trafficking Protein Get3, Junbin Hu
All ETDs from UAB
Molecular chaperones are a large group of proteins that bind and stabilize nascent polypeptides and facilitate protein folding. One major function of chaperones is to bind hydrophobic segments of nascent polypeptides to prevent them from aggregating. How chaperone Hsp40 recognizes and interacts with polypeptides and cooperates with chaperone Hsp70 is a fundamental question. The crystal structure of the putative peptide-binding fragment of Hdj1, a human member of the type II Hsp40 family was determined, suggesting the domain I of Hsp40 may possess significant flexibility which is important for Hsp40 to regulate the size of the cleft. The flexibility may be …
The Effect Of Stearic Acid On Breast Cancer Development And Progression, Lynda Michelle Evans
The Effect Of Stearic Acid On Breast Cancer Development And Progression, Lynda Michelle Evans
All ETDs from UAB
earate is an 18-carbon saturated fatty acid that is found in many foods in the western diet including beef and chocolate. Cell culture studies indicate stearate may have various anti-cancer properties including inhibition of cancer cell proliferation and invasion, morphological changes, and induction of apoptosis. Animal studies have found that dietary stearate delays tumor development and decreases tumor incidence. To date, many of the mechanisms underlying these processes are unclear. In this study, evidence is presented showing stearate induces morphological changes in breast cancer cells. Inhibition of de novo diacylglycerol (DAG) generation and subsequent protein kinase C (PKC) activation inhibits …
The Protective Role Of Transglutaminase 2 In Ischemic Stroke, Anthony J. Filiano
The Protective Role Of Transglutaminase 2 In Ischemic Stroke, Anthony J. Filiano
All ETDs from UAB
Stroke is a leading cause of long term disabilities in the US. Currently, administration of thrombolytics is the only approved therapy. Due to the variability, small management time window, and lack of options for effective treatment, there is a clear need for new compounds to alleviate cell death post-stroke. Transglutaminase 2 (TG2) can decrease apoptotic signaling during stroke and lead to increased neuronal survival making it a potential target for therapeutic intervention. TG2, a multifunction enzyme that has both transamidase (TG) and GTPase activities, amongst others, has recently been shown to be upregulated in numerous neurodegenerative conditions, including stroke. In …
Erythrocyte Invasion By Plasmodium Falciparum, Matthew L. Jones
Erythrocyte Invasion By Plasmodium Falciparum, Matthew L. Jones
All ETDs from UAB
Malaria poses a severe threat to global public health, with the majority of the world’s population living in malaria-endemic settings. Plasmodium falciparum is a major cause of malaria, and is the predominant cause of fatal malaria. This parasite, like other Plasmodium spp., has a complex life cycle, but causes disease only as a result of a lytic life cycle phase that occurs within the erythrocyte. As development within the erythrocyte is fully responsible for disease pathology, it follows that a detailed molecular understanding of the process of erythrocyte invasion by P. falciparum parasites would allow the development of new and …
Interaction Between Bacteriophage Dms3 And Host Crispr Region Inhibits Group Behaviors Of Pseudomonas Aeruginosa, Michael E. Zegans, Jeffrey C. Wagner, Kyle C. Cady, Daniel M. Murphy, John H. Hammond, George A. O'Toole
Interaction Between Bacteriophage Dms3 And Host Crispr Region Inhibits Group Behaviors Of Pseudomonas Aeruginosa, Michael E. Zegans, Jeffrey C. Wagner, Kyle C. Cady, Daniel M. Murphy, John H. Hammond, George A. O'Toole
Dartmouth Scholarship
Bacteriophage infection has profound effects on bacterial biology. Clustered regular interspaced short palindromic repeats (CRISPRs) and cas (CRISPR-associated) genes are found in most archaea and many bacteria and have been reported to play a role in resistance to bacteriophage infection. We observed that lysogenic infection of Pseudomonas aeruginosa PA14 with bacteriophage DMS3 inhibits biofilm formation and swarming motility, both important bacterial group behaviors. This inhibition requires the CRISPR region in the host. Mutation or deletion of five of the six cas genes and one of the two CRISPRs in this region restored biofilm formation and swarming …
Epigenetic Control Mechanisms In Somatic Cells Mediated By Dna Methyltransferase 1, Bongyong Lee
Epigenetic Control Mechanisms In Somatic Cells Mediated By Dna Methyltransferase 1, Bongyong Lee
Electronic Theses and Dissertations
DNA methylation regulates gene expression through a complex network of protein/protein and protein/DNA interactions in chromatin. The maintenance methylase, DNA methyltransferase 1 (DNMT1), is a prominent enzyme in the process that is linked to DNA replication and drives the heritable nature of epigenetic modifications in somatic cells. The mechanistic details that explain how DNMT1 catalytic action is directed in a chromatin setting are not well understood. We hypothesize that post translational modifications and a variety of protein-protein interactions processes are key regulatory elements that set the methylation of CpG elements essential for normal growth behavior in somatic cells. These fundamental …
The Peptidyl-Prolyl Isomerase Pin1 Promotes Nf-Kappab And Stat3 Signaling In Glioblastoma, George Prescott Atkinson
The Peptidyl-Prolyl Isomerase Pin1 Promotes Nf-Kappab And Stat3 Signaling In Glioblastoma, George Prescott Atkinson
All ETDs from UAB
Glioblastoma (GBM) is an incurable tumor of the central nervous system (CNS). Over the past 50 years, little progress has made in improving the quality of life and median lifespans of patients who are diagnosed with this devastating disease. However, new insights into the aberrant signaling pathways at the root of GBM pathology are providing new targets for next generation cancer therapies. Two signaling pathways that are commonly upregulated in GBM are NF-kappaB and STAT3. Importantly, tumor models in which NF-kappaB and STAT3 signaling are inhibited have demonstrated the importance of these pathways to GBM growth and proliferation. Therefore, better …
Targeting Angiogenesis With Plasminogen Kringle 5, Braden Cox Mcfarland
Targeting Angiogenesis With Plasminogen Kringle 5, Braden Cox Mcfarland
All ETDs from UAB
The recombinant fifth kringle domain of plasminogen (rK5) has been shown to induce apoptosis of dermal microvessel endothelial cells (MvEC), and this pro-apoptotic effect required rK5 binding to cell surface glucose-regulated protein 78 (GRP78). GRP78 is a member of the heat shock protein family and under certain conditions is expressed on the cell surface. I am interested in identifying new anti-angiogenic therapy for glioblastoma tumors. The efficacy of certain anti-angiogenic therapy can be improved when combined with radiation, and radiation is a standard therapy for glioblastoma tumors; therefore, I investigated the pro-apoptotic effect of rK5 combined with radiation on primary …
Regulation Of B Cell Biology By Fcγ Receptors, Xinrui Li
Regulation Of B Cell Biology By Fcγ Receptors, Xinrui Li
All ETDs from UAB
B cell development, maturation and proliferation are all strictly regulated processes. Disruption of the regulatory network at any step would lead to immune disorders. The regulatory system of B cells can be considered as two layers: a general homeostasis regulation system and a specificity-based control system. General regulation of B cell homeostasis is mastered by BLyS (B Lymphocyte Stimulator) and several other BLyS family cytokines, which serve as a crucial survival factor for which transitional and mature B cells compete. Specificity-based control is achieved via B cell antigen receptors (BCRs), which serve as a determinant of whether an antigen-specific B …
Protein Trafficking And 4.1r Relocalization In Plamodium Falciparum-Infected Erythrocytes, Lindsay A. Parish
Protein Trafficking And 4.1r Relocalization In Plamodium Falciparum-Infected Erythrocytes, Lindsay A. Parish
All ETDs from UAB
Malaria is a mosquito-borne infectious disease that is caused by parasites in the genus Plasmodium. There are four species of malaria that routinely infect humans, but it is P. falciparum that is responsible for the majority of the severe and fatal cases of malaria. P. falciparum has a complex life cycle involving a mosquito vector and intracellular stages in both hepatocytes and erythrocytes; however, it is only the intraerythrocytic stages that are the cause of the pathology associated with malaria. This pathology is largely due to the ability of infected erythrocytes to cytoadhere to host microvasculature. After invasion, the parasite …
Late Development Plasticity In The T Helper 17 Lineage, Yun Kyung Lee
Late Development Plasticity In The T Helper 17 Lineage, Yun Kyung Lee
All ETDs from UAB
CD4 T cells are a principal component of the adaptive immune system that is required for the efficient elimination of foreign antigens, but dysregulated CD4 T cells responses may result in autoimmune and chronic inflammatory diseases. The differentiation of effector CD4 T cells is directed by cytokines elicited by pathogendriven innate immune responses. Therefore the coordinated innate and adaptive immune responses provide an efficient system for host protection. Our understanding of distinct differentiated CD4 T cells has recently expanded with the discovery of the Th17 lineage, a new subset of effector CD4 T cells that has been implicated in chronic …
Mouse Modeling Of Pancreatic Ductal Adenocarcinoma (Pdac); Search For Early Diagnostic Markers And Therapeutic Targets, Kyoko Kojima
Mouse Modeling Of Pancreatic Ductal Adenocarcinoma (Pdac); Search For Early Diagnostic Markers And Therapeutic Targets, Kyoko Kojima
All ETDs from UAB
PDAC is a highly malignant neoplasm that carries a very poor prognosis. PDAC development is a multistage transformation process that involves multiple genetic alterations that include activation of EGFR/HER2 and KRAS, and loss-of-function mutations in INK4A/ARF, p53 and SMAD4. In recent years, several genetically engineered mouse models that accurately recapitulate human pancreatic neoplasia have been developed. Histological characterizations of those models have revealed possible roles for the mutated RAS, INK4a/ARF and p53 in pancreatic tumorigenesis. However, the role of SMAD4 mutation, which is associated with late stages of tumor progression, has yet to be explored. Additionally, those models that would …
Genome Copy Number Profiles Of African-American And European-American Early-Onset Breast Cancer, Tyesha Latrece Farmer
Genome Copy Number Profiles Of African-American And European-American Early-Onset Breast Cancer, Tyesha Latrece Farmer
All ETDs from UAB
Breast cancer is the second leading cause of cancer related death among women in the United States, surpassed only by lung cancer. It is estimated that over 200,000 women developed breast cancer and more than 40,000 died of the disease in 2008 alone. Although the overall incidence of breast cancer is lower in African-American women, the incidence of early-onset breast cancer is higher than that observed in European-American women. African-American women also have higher mortality rates due to this disease than those observed in their European-American counterparts. Breast cancer exhibits heterogeneity at the molecular, cellular, and clinical levels, and the …
Determinants Of Growth Hormone Receptor Downregulation, Luqin Deng
Determinants Of Growth Hormone Receptor Downregulation, Luqin Deng
All ETDs from UAB
Growth hormone (GH), a 22 kD polypeptide primarily produced in the anterior pituitary gland, is a key regulator of postnatal growth and affects carbohydrate, protein and lipid metabolism. Growth hormone receptor (GHR) is a single membrane-spanning type Ⅰ glycoprotein of the cytokine receptor family and is initially synthesized as a precursor and undergoes carbohydrate processing during transport through the Golgi. It has no intrinsic kinase activity. One molecule of GH binding to predimerized GHR on the cell surface induces the receptor conformational change activating the cytoplasmic domainassociated tyrosine kinase, Janus Kinase 2 (JAK2), which phosphorylates GHR, followed by the activation …
The Potential Role Of Vh Replacement In Editing And Generating Autoreactive Antibodies, Run Fan
The Potential Role Of Vh Replacement In Editing And Generating Autoreactive Antibodies, Run Fan
All ETDs from UAB
VH replacement occurs through RAG-mediated secondary recombination between an upstream VH gene and an existing VHDJH joint. In the first part of this dissertation, we focused on the potential regulation of VH replacement in the human B lineage EU12 cells muHC+ population, which underwent spontaneous VH replacement during in vitro culture. We cloned one of the dominant IgH genes, A19H, expressed in the EU12 muHC+ cells, and generated recombinant antibodies. We found that these recombinant antibodies recognize SM antigens. The anti-SM reactivity of A19H can not be efficiently neutralized by a randomly selected group of fourteen IgL chains from healthy …
Insulin Signaling And Function In Osteoblasts, Keertik S. Fulzele
Insulin Signaling And Function In Osteoblasts, Keertik S. Fulzele
All ETDs from UAB
Insulin and insulin-like growth factor-1 (IGF-1) are evolutionarily conserved hormonal signaling pathways with structurally similar ligands and receptors. Recent stu-dies suggest that that insulin and IGF-1 exert distinct as well as overlapping functions to regulate different aspects of skeletal development. A major problem in distinguishing the actions of insulin and IGF-1 is the fact that the receptors are co-expressed in many cell types and each ligand is able to cross-activate the other ligands' receptor. To distinguish direct skeletal actions of insulin from that of IGF-1, we have conditionally disrupted each receptor in vitro and in vivo specifically in osteoblasts. Studies …
Regulation Of The Human Heme Oxygenase-1 Gene By Nitro-Linoleic Acid, Macienne M. Wright
Regulation Of The Human Heme Oxygenase-1 Gene By Nitro-Linoleic Acid, Macienne M. Wright
All ETDs from UAB
Nitro-fatty acids (NO-FA) exert anti-inflammatory effects in the vasculature. Heme oxygenase-1 (HO-1) degrades heme into iron, biliverdin, and carbon monoxide and is up-regulated as an adaptive and protective response to inflammatory processes. This dissertation examined whether nitro-linoleic acid (LNO2) induced HO-1 gene expression and evaluated the molecular mechanism of induction in human aortic endothelial (HAEC), human embryonic kidney 293 (HEK 293) and mouse embryonic fibroblast (MEF) cells. LNO2 induced HO-1 mRNA and protein in HAEC at the level of transcription. NO scavenging by carboxy-PTIO partially reversed LNO2–mediated induction of HO-1, suggesting that LNO2 acts via NO-dependent and NO-independent mechanisms of …
Protective Mechanisms Of Apoa-I Mimetic Peptide Action In Sepsis-Induced Tissue Injury, Zhenghao Zhang
Protective Mechanisms Of Apoa-I Mimetic Peptide Action In Sepsis-Induced Tissue Injury, Zhenghao Zhang
All ETDs from UAB
Sepsis is among the top ten causes of death in the US, and it is associated with severe inflammatory tissue damage and organ dysfunction. Reduced plasma high density lipoprotein (HDL) is associated with increased mortality in septic patients. Since raising plasma apolipoprotein (apo) A-I and HDL may reduce sepsis complications, we tested the hypothesis that the apoA-I mimetic peptide 4F confers similar protective effects in two animal models of sepsis, and explored the possible mechanisms. In endotoxemic rats, inflammatory mediators were significantly induced while blood pressure was significantly reduced by 6hr. The impaired arterial response to vasoconstrictors was related to …
Molecular Characterization Of Neural Apoptosis, Ken C. Walls
Molecular Characterization Of Neural Apoptosis, Ken C. Walls
All ETDs from UAB
Neural cell death plays a critical role in normal nervous system development and dysregulated neural stem cell death contributes to brain malformation, tumorgenesis, and possibly, neurodegenerative disease. The two major forms of cell death in the nervous system are apoptotic and autophagic. Altered clearance of proteins may lead to neuronal dysfunction and neuron loss via apoptotic and/or autophagic pathways. The research presented here examined the molecular regulation of the autophagic and apoptotic pathways in vivo and in vitro by using models of lysosome dysfunction and hypoxia. In vivo investigation of lysosome dysfunction-induced death utilized the cathepsin D (CD)-deficient mouse model. …
A Functional Analysis Of The Human Immunodeficiency Virus, Sushma Jyotika Bhakta
A Functional Analysis Of The Human Immunodeficiency Virus, Sushma Jyotika Bhakta
All ETDs from UAB
The retroviral life cycle is separated into two distinct phases of infection. In the first phase, viral enzymes and proteins allow the virus to establish infection. The virus usurps host machinery in the second stage to produce infectious virus. In both phases of the replication cycle, the envelope (Env) glycoprotein (gp) is a key component of infectivity. Env plays a pivotal role in viral entry, by mediating attachment and facilitating fusion of the viral and cellular membranes, and during assembly, where Env must be incorporated into budding virions in order to produce infectious virions. The Env cytoplasmic domain (CD) interacts …
The Effects Of P-Glycoprotein Deficiency On Intestinal Integrity And Homeostasis, Elizabeth Marie Staley
The Effects Of P-Glycoprotein Deficiency On Intestinal Integrity And Homeostasis, Elizabeth Marie Staley
All ETDs from UAB
THE EFFECTS OF P-GLYCOPROTEIN DEFICIENCY ON INTESTINAL INTEGRITY AND HOMEOSTASIS ELIZABETH M. STALEY MICROBIOLOGY ABSTRACT P-glycoprotein (P-gp) is an ATP-binding transmembrane pump associated with substrate extrusion in cells of epithelial and hematopoietic lineage. Polymorphisms in multidrug resistance genes (MDR), which encode this protein, are associated with development of inflammatory bowel disease in patient subsets. Furthermore, FVB/N animals deficient in P-gp expression develop spontaneous colitis. Disease in FVB.mdr1a-/- animals is reported to be the result of P-gp deficiencies in intestinal epithelial cells. We developed a neonatal model of bone marrow reconstitution to accurately evaluate the contribution of P-gp deficiencies in either …
Genetic Complexity And Population Diversity Of Plasmodium Falciparum In The Peruvian Amazon, Patrick Lee Sutton
Genetic Complexity And Population Diversity Of Plasmodium Falciparum In The Peruvian Amazon, Patrick Lee Sutton
All ETDs from UAB
GENETIC COMPLEXITY AND POPULATION DIVERSITY OF PLASMODIUM FALCIPARUM IN THE PERUVIAN AMAZON PATRICK LEE SUTTON MICROBIOLOGY GRADUATE PROGRAM ABSTRACT Characterizing the genetic complexity of immunologically relevant proteins, expressed during the life cycle of P. falciparum, is essential for identifying and advancing potential vaccine candidates. The current malaria immunity paradigm is rooted in high transmission studies which have investigated the impact of high genetic diversity on the development of humoral responses. Given the dynamic nature of malaria parasites, especially their ability to acclimate to change, it is likely that regions of low transmission do not share the same malaria immunity paradigm …
Regulation Of Tissue Remodeling Through The Calreticulin Binding Domain Of Thrombospondin-1, Mariya Ts'ana Sweetwyne
Regulation Of Tissue Remodeling Through The Calreticulin Binding Domain Of Thrombospondin-1, Mariya Ts'ana Sweetwyne
All ETDs from UAB
Thrombospondin-1 (TSP1) is a multifunctional matricellular protein released by platelets in response to injury and secreted by cells under stress. TSP1 is cleaved into functional N- and C-terminal domain fragments, which have paradoxical actions with respect to angiogenesis, cell survival, and cell adhesion. Wound healing studies by others demonstrated that TSP1 knockout mice have delayed rates of wound closure, which was attributed to actions of the C-terminal domain. We wished to investigate the specific role of the N-terminal domain in tissue remodeling. Previously, we established that a sequence (aa 17-35) in the N-terminal domain of TSP1 induces focal adhesion disassembly, …