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Full-Text Articles in Cell and Developmental Biology

Fgfr4 Glycosylation And Processing In Cholangiocarcinoma Promote Cancer Signaling, Andrew J. Phillips Aug 2021

Fgfr4 Glycosylation And Processing In Cholangiocarcinoma Promote Cancer Signaling, Andrew J. Phillips

Theses & Dissertations

Cholangiocarcinoma is a cancer of cholangiocytes, or epithelial cells lining the biliary tract. It is associated with a poor prognosis and additional therapeutic treatments are needed to help patients affected by this disease. Fibroblast growth factor receptor 4 (FGFR4) is receptor tyrosine kinase that is involved in various physiologic and pathologic processes. TCGA analysis of thirty different tumor types showed the highest FGFR4 mRNA levels in cholangiocarcinoma. At the protein level, FGFR4 was observed in the majority of cholangiocarcinomas screened and, higher levels were associated with a poorer prognosis. FGFR4 is an N-linked glycosylated receptor tyrosine kinase that we show …


In Utero And Postnatal Oxycodone Exposure: Implications For Intergenerational Effects, Katherine E. Odegaard May 2021

In Utero And Postnatal Oxycodone Exposure: Implications For Intergenerational Effects, Katherine E. Odegaard

Theses & Dissertations

Prescription opioid abuse during and after pregnancy is a rising public health concern. Adding a layer of complexity is the role of heredity in the overall development of these exposed offspring. The present work uses a preclinical rat model mimicking oxycodone (oxy) exposure in utero (IUO) and postnatally (PNO) to investigate comparative and intergenerational effects in the two different exposure groups.

To understand the direct effects of IUO and PNO exposure on the F1 generation, we employed a systems biology approach encompassing proton magnetic resonance spectroscopy (1H-MRS), electrophysiology RNA-sequencing, and pain assessment to elucidate molecular and behavioral changes …


Biomedical Porcine Models For The Study Of Surgical Hemostasis, Hindlimb Ischemia, And Pancreatic Cancer, Shruthishree Aravind May 2021

Biomedical Porcine Models For The Study Of Surgical Hemostasis, Hindlimb Ischemia, And Pancreatic Cancer, Shruthishree Aravind

Theses & Dissertations

Murine models have dominated the world of biomedical research and comparative medicine since their development in the early 1900s. [1] While they may be suitable models to study proteomics and genomics, they may not serve as effective translational models. [2-4] Murine models do not accurately model the pathophysiology of human disease and are limited by their size, application of medical imaging and intervention, which reduces their overall preclinical predictive value. [2-4]

Porcine models on the other hand, are slowly and steadily bridging the gap between murine models and human patients. [5] Pigs …


Role Of Endocytic Machinery Regulators In Egfr Traffic And Viral Entry, Insha Mushtaq May 2021

Role Of Endocytic Machinery Regulators In Egfr Traffic And Viral Entry, Insha Mushtaq

Theses & Dissertations

STUDY 1: Role of endocytic regulator EHD1 and its binding partner RUSC2 in EGFR traffic

Abstract

Epidermal growth factor receptor (EGFR) is a prototype receptor tyrosine kinase and an oncoprotein in many solid tumors. Cell surface display of EGFR is essential for cellular responses to its ligands. While post activation endocytic trafficking of EGFR has been well elucidated, little is known about mechanisms of basal/pre-activation surface display of EGFR. Here, we identify a novel role of the endocytic regulator EHD1 and a potential EHD1 partner, RUSC2, in cell surface display of EGFR. EHD1 and RUSC2 colocalize with EGFR in vesicular/tubular …


Targeted Therapies In Select Gastrointestinal Cancers And Cancer Cachexia, Scott Mulder Dec 2020

Targeted Therapies In Select Gastrointestinal Cancers And Cancer Cachexia, Scott Mulder

Theses & Dissertations

Hepatocellular carcinomas exhibit metabolic alterations to support their proliferative and biosynthetic needs. We identified that elevated expression of the mitochondrial oxidative carboxylase, malic enzyme 2 (ME2), correlates with poorer hepatocellular carcinoma patient survival. Hepatocellular carcinoma patient tumors with high ME2 expression exhibit transcriptomic alterations indicative of PI3K/AKT/mTOR and c-Myc signaling as well as elevated central carbon, fatty acid, and redox metabolism pathways. Depletion of ME2 in the hepatocellular carcinoma cell line PLC or in the livers of mice treated with diethylnitrosamine to chemically induce hepatocellular carcinomas, results in impaired proliferation and reduced tumor formation. Additionally, the loss of …


The Cellular Origin And Molecular Drivers Of Claudin-Low Mammary Cancer, Patrick D. Raedler Dec 2020

The Cellular Origin And Molecular Drivers Of Claudin-Low Mammary Cancer, Patrick D. Raedler

Theses & Dissertations

Breast cancers of the claudin-low subtype make up a substantial portion of triple-negative breast cancers and have stem cell-like and mesenchymal features. Although it has been recognized for some time that this breast cancer subtype is highly aggressive and difficult to treat, the molecular drivers and cellular origin of claudin-low breast cancer have been poorly defined. The lack of suitable in vivo models has prohibited the study of tumor initiation and progression of this subtype. In this work, we report two novel mouse models that, upon expression of oncogenic RAS in the mammary epithelium, develop highly metastatic triple-negative mammary tumors …


Mechanisms By Which Mnte-2-Pyp Suppresses Prostate Cancer Cell Growth, Yuxiang Zhu Dec 2020

Mechanisms By Which Mnte-2-Pyp Suppresses Prostate Cancer Cell Growth, Yuxiang Zhu

Theses & Dissertations

Prostate cancer patients are often treated with radiotherapy. MnTE-2-PyP, is a superoxide dismutase (SOD) mimic and a known radioprotector of normal tissues. Our recent work demonstrates that MnTE-2-PyP also inhibits prostate cancer progression with radiotherapy; however, the mechanisms remain unclear. In this thesis, we identified that MnTE-2-PyP-induced intracellular H2O2 levels are critical in inhibiting growth of prostate cancer cells. We found that MnTE-2-PyP induced protein oxidations in PC3 cells and one major group of oxidized protein targets were involved in energy metabolism. The oxidative phosphorylation rates were significantly enhanced in both PC3 and LNCaP cells with MnTE-2-PyP treatment, but mitochondrial …


From Development To Therapy: A Panoramic Approach To Further Our Understanding Of Cancer, Brittany Poelaert Aug 2020

From Development To Therapy: A Panoramic Approach To Further Our Understanding Of Cancer, Brittany Poelaert

Theses & Dissertations

Solid tumors, such as pancreatic cancer, often result in dismally low survival outcomes for patients due to insufficient understanding of disease development and progression. Pancreatic cancer is the fourth leading cause of cancer-related deaths in the United States and although oncogenic drivers (such as KRAS mutation or loss of tumor suppressor p53) and stages of disease development have been studied, further understanding of pancreatic cancer development is greatly needed. Studies from our laboratory have identified novel and varied functions of amyloid precursor-like protein 2 (APLP2) in the development and progression of pancreatic cancer. These functions include promoting cancer cell migration, …


Molecular Insights Into Paf-1 Mediated Pancreatic Homeostasis, Stemness, And Cancer Progression, Saswati Karmakar May 2020

Molecular Insights Into Paf-1 Mediated Pancreatic Homeostasis, Stemness, And Cancer Progression, Saswati Karmakar

Theses & Dissertations

Pancreatic ductal adenocarcinoma (PDAC) is a lethal disease that has one of the lowest 5-year survival rates among cancers, at just 9%. This grim prognosis is primarily due to the extensive metastatic spread of tumor cells beyond the pancreas at diagnosis and the inability of current therapeutic modalities to treat this aggressive disease effectively. Given that the cancer cells in pancreatic tumors are heterogeneous, the major culprit for cancer initiation, progression, and metastasis remains elusive. Recent studies provide evidence for the existence of highly tumorigenic and drug-resistant cells that are capable of tumor initiation, known as the cancer stem cells …


Mitochondrial Metabolism As A Therapeutic Target For Pancreatic Cancer, Simon Shin May 2020

Mitochondrial Metabolism As A Therapeutic Target For Pancreatic Cancer, Simon Shin

Theses & Dissertations

Mitochondria are biosynthetic and bioenergetic hubs that confer cancer cells the metabolic flexibility to survive and grow in harsh tumor microenvironments. Accordingly, mitochondrial metabolism represents a promising target for pancreatic ductal adenocarcinoma (PDAC), which is frequently characterized as desmoplastic and nutrient poor. The findings presented in the first set of studies highlight the importance of mitochondria-dependent metabolic flexibility in PDAC cells upon exposure to acidic conditions. An acidic tumor microenvironment is a common feature of many solid tumors and exerts a profound influence on cancer biology. Similar to previous findings, we demonstrated that low extracellular pH induces epithelial-to-mesenchymal transition (EMT) …


Dimers Of Isatin Derived Spirocyclic Nf-Κb Inhibitor Exhibit Potent Anticancer Activity By Inducing Upr Mediated Apoptosis, Smit Kour May 2020

Dimers Of Isatin Derived Spirocyclic Nf-Κb Inhibitor Exhibit Potent Anticancer Activity By Inducing Upr Mediated Apoptosis, Smit Kour

Theses & Dissertations

Activation of NFκB pathway has been implicated in several malignancies and plays a role in many key processes including tumor initiation and progression. The NFκB pathway is activated when TNFα in the tumor microenvironment binds to its receptor, eventually leading to the phosphorylation of the kinase IKKβ. Once active, IKKβ phosphorylates IκBα, a protein that functions to sequester NFκB in the cytosol of resting cells. The phosphorylation of IκBα leads to its degradation in the proteasome and allows NFκB to translocate to the nucleus where it can drive gene transcription. The sulfhydryl groups on solvent-exposed cysteine (Cys) residues of the …


Delivery Of Small Molecule And Rna Using Synthetic Polymeric Micelles And Multifunctional Exosomes For The Treatment Of Type 1 Diabetes, Yang Peng Dec 2019

Delivery Of Small Molecule And Rna Using Synthetic Polymeric Micelles And Multifunctional Exosomes For The Treatment Of Type 1 Diabetes, Yang Peng

Theses & Dissertations

Type 1 diabetes is one of the most challenging chronic autoimmune diseases. The destruction and dysfunction of insulin-secreting β cells are the results of inflammatory infiltration and the synergistic effect of multiple immune cells. The aim of this dissertation is to develop novel and reliable therapeutic approaches to advance the treatment of T1D: including chemical modification of a broad-spectrum immunosuppressant, co-application of small molecule based immune intervention and siRNA based β cell preservative therapy, and administration of a PI3K-δ/γ dual inhibitor to specifically target immune cells, utilizing synthetic polymeric micelles or natural produced multi-functional exosomes derived from human bone marrow …


The Role Of Histone Chaperone Fact Complex In Base Excision Repair Pathway And Its Therapeutic Potential In Colon Cancer And Medulloblastoma, Heyu Song Dec 2019

The Role Of Histone Chaperone Fact Complex In Base Excision Repair Pathway And Its Therapeutic Potential In Colon Cancer And Medulloblastoma, Heyu Song

Theses & Dissertations

Base excision repair (BER) pathway is required for the removal of damaged bases caused by alkylation, oxidation and ring-saturation. Human apurinic/apyrimidinic endonuclease 1 (APE1) plays a central role in BER pathway. Although repair of damaged bases by recombinant APE1 has been well investigated in vitro, how APE1 gains access to damaged bases in the context of chromatin is largely unknown. A prominent member of the histone chaperone family, FACT (Facilitates Chromatin Transcription) is thought to reorganize nucleosomes through the destabilization of multiple intra-nucleosome contacts. FACT complex is composed of two polypeptides identified as SPT16 (Suppressor of Ty 16) and SSRP1 …


Characterizing The Combination Of Rpa Inhibitors With Parp Inhibitors In High-Grade Serous Ovarian Cancer, Yat Tang Dec 2019

Characterizing The Combination Of Rpa Inhibitors With Parp Inhibitors In High-Grade Serous Ovarian Cancer, Yat Tang

Theses & Dissertations

High-grade serous ovarian cancer (HGSC) is the most common and deadly gynecologic malignancy. HGSC patients with BRCA1/2 mutations have homologous recombination deficiency (HRD), requiring parallel pathways to maintain genome integrity (e.g., PARP1, PARP2). Approximately 50% of ovarian carcinomas are estimated to exhibit HRD. For the remaining 50% and the large percentage of HRD patients with acquired or innate resistance to single-agent PARP inhibitors, there is a need to develop alternative therapeutic strategies.

Replication Protein A (RPA) is a heterotrimeric protein crucial for genome maintenance. Phosphorylation of RPA in DNA damage response (DDR) is a negative regulator of DNA end resection. …


Roles Of Autism Gene Arid1b In Murine Brain Development And Behavior, Amanda L. Smith Dec 2019

Roles Of Autism Gene Arid1b In Murine Brain Development And Behavior, Amanda L. Smith

Theses & Dissertations

Autism spectrum disorder (ASD) and intellectual disability (ID) are highly prevalent neurodevelopmental disorders characterized by social and communication deficits, stereotyped behaviors, cognitive dysfunction, and deficits in adaptive behaviors. The pathogenesis underlying these disorders remains unknown, and thus no pharmacologic or genetic therapies are currently available. Recent progress in the field has shown that haploinsufficiency of the AT-rich interactive domain-containing 1B (ARID1B) gene is a genetic cause of ASD and ID. Our lab recently developed an Arid1b knockout mouse model to better study its role in the pathogenesis of these disorders. One theory regarding the cause of neurodevelopmental disorders …


Ecdysoneless, A Novel Regulator Of Ca2+ Homeostasis And Metabolism, Aniruddha Sarkar Dec 2019

Ecdysoneless, A Novel Regulator Of Ca2+ Homeostasis And Metabolism, Aniruddha Sarkar

Theses & Dissertations

The hallmarks of cancer include sustained proliferation and survival in the face of cellular stresses imposed by the oncogenic drive, as well as metabolic rewiring for tumor growth under adverse nutritional conditions. Adaptive alterations in key biochemical networks that underlie metabolic rewiring represent potential opportunities to develop new therapeutic strategies against cancer.

My thesis focuses on mammalian Ecdysoneless (ECD), a conserved homolog of the fly Ecdysoneless gene product, which engages fundamental cell biological processes of ER stress, Ca2+ signaling and metabolism to help sustain the oncogenic drive in tumor cells. Recent studies from our laboratory provide a clear evidence …


Mechanism Of Bax/Bak Activation In Apoptotic Signaling, Kai Huang Dec 2019

Mechanism Of Bax/Bak Activation In Apoptotic Signaling, Kai Huang

Theses & Dissertations

The Bcl-2 family proteins, including the anti-apoptotic members, pro-apoptotic effectors Bax/Bak, and the BH3-only proteins, are key components of the mitochondrial apoptotic pathway. The BH3-only protein Bid is critical for the mitochondrial pathway of apoptosis after TRAIL-induced death receptor activation. However, the mechanism of Bid activation during TRAIL-induced apoptosis is unclear. By putting back wild-type and mutants of Bid in Bid deficient (Bid KO) and Bid/Bax/Bak TKO colon cancer cells, we demonstrated that cleavage by caspase 8 and mitochondrial targeting are critical events for Bid activation. One of the biggest mysteries in apoptosis is how Bax/Bak was activated by BH3-only …


Molecular Insights Into Major Peripheral T-Cell Lymphoma Entities With Advances In A Representative Model System, Tayla B. Heavican Dec 2019

Molecular Insights Into Major Peripheral T-Cell Lymphoma Entities With Advances In A Representative Model System, Tayla B. Heavican

Theses & Dissertations

Peripheral T-cell lymphoma (PTCL) is a group of complex clinicopathological entities associated with an aggressive clinical course. Angioimmunoblastic T-cell lymphoma (AITL) and PTCL-not otherwise specified (PTCL-NOS) are the two most frequent categories accounting for more than 50% of PTCLs. Gene expression profiling (GEP) defined molecular signatures for AITL and delineated biological and prognostic subgroups within PTCL-NOS (PTCL-GATA3 and PTCL-TBX21). Genomic copy number analysis and targeted sequencing revealed unique genomic abnormalities and oncogenic pathways, indicating distinct oncogenic evolution. PTCL-GATA3 exhibited higher genomic complexity characterized by frequent loss or mutation of tumor suppressor genes targeting the CDKN2A/B-TP53 axis and PTEN-PI3K pathways. …


Brca1 & Ctdp1 Brct Domainomics In The Dna Damage Response, Kimiko L. Krieger Dec 2019

Brca1 & Ctdp1 Brct Domainomics In The Dna Damage Response, Kimiko L. Krieger

Theses & Dissertations

Genomic instability is one of the enabling characteristics of cancer. DNA damage response pathways are important for genomic integrity and cell cycle progression. Defects in DNA damage repair can often lead to cell cycle arrest, cell death, or tumorigenesis. The activation of the DNA damage response includes tightly regulated signaling cascades that involve kinase phosphorylation and modular domains that scaffold phosphorylated motifs to coordinate recruitment of DNA repair proteins. Modular domains are conserved tertiary structures of a protein that can fold, function, and evolve independently from an intact protein. One of the most common modular domains involved in DNA damage …


The Role Of E3 Ubiquitin Ligase Fbxo9 In Normal And Malignant Hematopoiesis, R. Willow Hynes-Smith Dec 2019

The Role Of E3 Ubiquitin Ligase Fbxo9 In Normal And Malignant Hematopoiesis, R. Willow Hynes-Smith

Theses & Dissertations

Hematopoiesis is a critical system that provides blood cells necessary for nutrient and oxygen transfer throughout an organism and for protection from harmful agents. It is maintained throughout life by the hematopoietic stem cells (HSCs) that reside within the bone marrow (BM) and are responsible for providing billions of new cells each day. HSCs maintain a careful balance between a quiescent state, that sustains the integrity of the stem cells, and a proliferative state, that provides new cells to replenish those that undergo apoptosis. Hematopoiesis is regulated by a variety of intrinsic pathways and extrinsic signals such as cytokine signaling, …


Hdac1 Is A Required Cofactor Of Cbfβ-Smmhc And A Therapeutic Target In Inversion 16 Acute Myeloid Leukemia, Lisa E. Richter Dec 2019

Hdac1 Is A Required Cofactor Of Cbfβ-Smmhc And A Therapeutic Target In Inversion 16 Acute Myeloid Leukemia, Lisa E. Richter

Theses & Dissertations

Acute myeloid leukemia (AML) is a neoplastic disease characterized by the uncontrolled proliferation and accumulation of immature myeloid cells. A common mutation in AML is the inversion of chromosome 16 [inv(16)], which generates a fusion between the genes for core binding factor beta (CBFB) and smooth muscle myosin heavy chain (MYH11), forming the oncogene CBFB-MYH11. The expressed protein, CBFβ-SMMHC, forms a heterodimer with the key hematopoietic transcription factor RUNX1. Although CBFβ-SMMHC was previously thought to dominantly repress RUNX1, recent work suggests that CBFβ-SMMHC functions together with RUNX1 to activate transcription of specific target genes.

Targeting the …


The Role Of Reactive Oxygen Species In Regulating Macrophage And Fibroblast Activation Within The Breast Cancer Tumor Microenvironment, Brandon J. Griess Dec 2019

The Role Of Reactive Oxygen Species In Regulating Macrophage And Fibroblast Activation Within The Breast Cancer Tumor Microenvironment, Brandon J. Griess

Theses & Dissertations

The tumor microenvironment (TME) is a key determining factor in breast cancer, especially the more aggressive subtype triple negative breast cancer (TNBC). The activated fibroblasts and macrophages within the TME have many tumor promoting functions. Therefore, targeting their activation presents a novel therapeutic approach in TNBC. My work studied the role of reactive oxygen species (ROS) during fibroblast and macrophage activation in breast cancer.

My studies showed that expression of the secreted antioxidant enzyme, EcSOD, is silenced in breast cancer samples, in part, via increased promoter methylation. The re-expression of EcSOD inhibited c-Met activation in the TNBC cell line, MDA-MB231. …


Defining The Role Of Tyrosine Phosphorylation In The Regulation Of Connexin43 In Cardiac Diseases, Li Zheng Dec 2019

Defining The Role Of Tyrosine Phosphorylation In The Regulation Of Connexin43 In Cardiac Diseases, Li Zheng

Theses & Dissertations

Connexins are integral membrane proteins that oligomerize to form gap junction channels. Ions and small molecules diffuse intercellularly through these channels, allowing individual cellular events to synchronize into the functional response of an entire organ. Gap junction channels composed of Connexin43 (Cx43) mediate electrical coupling and impulse propagation in the normal working myocardium. In the failing heart, Cx43 remodeling (decreased expression, altered phosphorylation state, loss at intercalated discs, and increased presence at lateral membranes) contributes to rhythm disturbances and contractile dysfunction. While there is considerable information regarding key interactions of Cx43 in the regulation of gap junction channels, unfortunately, the …


Il-17-Cxcr2 Axis Promotes Breast Cancer Metastasis And Therapy Resistance, Lingyun Wu Aug 2019

Il-17-Cxcr2 Axis Promotes Breast Cancer Metastasis And Therapy Resistance, Lingyun Wu

Theses & Dissertations

Cancer-related fatalities rank as the second leading cause of death in all ages and both genders in the United States. Moreover, breast cancer-related mortality rank as the second leading cause of death in females in the United States in 2019. The main concerns regarding breast cancer management include chemotherapy resistance and metastasis. Thus, the advanced understanding of cancer progression is required to develop improved therapeutic methods for breast cancer patients.

Recent studies demonstrate that neutrophils, as the most abundant leukocytes, play an essential role in breast progression. However, the mechanisms regarding neutrophils recruitment to the tumor sites, and the precise …


Molecular Mechanisms Governing Muscle Wasting In Cancer, Aneesha Dasgupta May 2019

Molecular Mechanisms Governing Muscle Wasting In Cancer, Aneesha Dasgupta

Theses & Dissertations

Pancreatic cancer is the third-leading cause of cancer-related deaths in the United States. About 80 percent of the pancreatic cancer patients suffer from cachexia and, about one-third die due to complexities related to the syndrome. Cachexia leads to a loss in body weight and cachectic patients are refractory to chemotherapy. Despite recent advances, the mechanisms of pancreatic cancer- cachexia and the potential therapeutic interventions remain poorly evaluated.

Sirtuins represent a class of proteins that are regulated by metabolic fluctuations in tissues. We observed a reduced expression of Sirt1 in spontaneous PDAC mice muscles, human pancreatic cancer muscles, and myotubes treated …


The Cxcr2-Dependent Role Of Cancer-Associated Fibroblasts In Pancreatic Ductal Adenocarcinoma, Mohammad Awaji May 2019

The Cxcr2-Dependent Role Of Cancer-Associated Fibroblasts In Pancreatic Ductal Adenocarcinoma, Mohammad Awaji

Theses & Dissertations

Pancreatic ductal adenocarcinoma (PDAC) is the most common type of pancreatic cancer, the fourth leading cause of cancer-related deaths in the USA with over 40,000 deaths per year. Unlike other major cancer types, the progress in dealing with PDAC is plodding, attributed mainly to the asymptomatic nature of the disease, the late diagnosis and the ineffectiveness of current therapies. A better understanding of the biology of the disease could permit the discovery of novel diagnostic and therapeutic tools. With that in mind, we present this dissertation that investigates the tumor-stromal interaction underlined by genetic alterations and inflammation. PDAC develop as …


The Role Of Zyxin And Limd1 In Mitosis And Cancer, Jiuli Zhou May 2019

The Role Of Zyxin And Limd1 In Mitosis And Cancer, Jiuli Zhou

Theses & Dissertations

The Hippo signaling pathway, originally discovered in Drosophila, consists of a core kinase cascade and has been subsequently demonstrated to control tissue growth and tumorigenesis. The core of this pathway contains MST1/2 (Mammalian sterile 20-like kinase 1/2), LATS1/2 (large tumor suppressor 1/2) and downstream effector named Yes-associated protein (YAP) and PDZ-binding motif (TAZ). MST1/2 transduce their kinase activity mainly through directly phosphorylating LATS1/2. Once phosphorylated and activated, LATS1/2 subsequently phosphorylate and inhibit YAP/TAZ from translocating to nucleus, thereby suppressing the expression of downstream pro-growth and survival genes. While recent studies provide important insight into the tumor suppressor properties of …


Induction And Metastasis Of Cancer Stem Cells In Pancreatic Cancer, Rama Krishna Nimmakayala May 2019

Induction And Metastasis Of Cancer Stem Cells In Pancreatic Cancer, Rama Krishna Nimmakayala

Theses & Dissertations

Pancreatic cancer is one of the most lethal of all types of cancer with an overall 5-year survival rate of less than 8%. Cancer cells in pancreatic tumor are heterogeneous, and it is poorly understood which population is most responsible for the cancer initiation, progression and metastasis. Recent studies provide evidence for the existence of a highly tumorigenic and metastatic cells within a heterogeneous tumor known as the cancer stem cells (CSCs). Studies also provided ample evidence for the existence of distinct types of CSC populations in a heterogeneous tumor with type specific genotypic, phenotypic and functional characteristics. But, it …


Targeting Oncogenic Protein Sythesis In Myc-Driven B Cell Lymphoma, Xuan Zhang May 2019

Targeting Oncogenic Protein Sythesis In Myc-Driven B Cell Lymphoma, Xuan Zhang

Theses & Dissertations

Burkitt lymphoma (BL) and diffuse large B-cell lymphoma (DLBCL) are aggressive tumors of mature B cells that can be distinguished based on histomorphological, phenotypic, and genetic features. B-cell lymphoma unclassifiable, with features intermediate between BL and DLBCL (BCL-U) is a subset of mature B cell lymphoma contains one or more features that overlap BL and DLBCL. Previous molecular analyses prove there is a biological continuum between BL and DLBCL based on the activity of MYC. Herein, in order to resolve the molecular heterogeneity of BCL-U, we tested whether a targeted expression profiling panel could categorize tumors as BL and DLBCL. …


Human Leukocyte Antigen (Hla) Class I Molecule Components And Amyloid Precursor-Like Protein 2 (Aplp2): Roles In Pancreatic Cancer Cell Migration, Bailee Sliker May 2019

Human Leukocyte Antigen (Hla) Class I Molecule Components And Amyloid Precursor-Like Protein 2 (Aplp2): Roles In Pancreatic Cancer Cell Migration, Bailee Sliker

Theses & Dissertations

Human leukocyte antigen (HLA) class I molecules are composed of a light chain (beta 2-microglobulin (β2m)) and HLA heavy chain. The heavy chains of these molecules have three different isotypes (–A, -B, and –C) and are highly polymorphic with thousands of sequence variations termed allotypes. The best-known role for these molecules is within the immune system, however, recent research implicates components of this molecule can function outside of this known immune role by contributing to cell migration. However, no studies have been published thus far investigating this non-immune function in pancreatic cancer. Therefore, I examined the role of …