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Full-Text Articles in Cell and Developmental Biology

Axogial Communication Mediated By Soluble Neuregulin-1 And Bdnf, Zhenzhong Ma Jan 2011

Axogial Communication Mediated By Soluble Neuregulin-1 And Bdnf, Zhenzhong Ma

Wayne State University Dissertations

During peripheral nervous system development, successful communication between axons and glial cells including Schwann cells in peripheral nervous system and oligodendrocytes in central nervous system, is required for the proper functions of both neurons and glia. Three types of alternatively-spliced proteins belonging to the neuregulin1 (NRG1) gene family of growth and differentiation factors are essential for Schwann cell survival and peripheral nerve development. While membrane-bound NRG1 forms (type III) has been strongly implicated in the regulation of myelination process at late stage of Schwann cell development, little is known about the role of soluble, heparin-binding forms of NRG1 (type I/II) …


Human Trophoblast Survival And Invasion In The Developing Placenta: Autocrine Regulation By Hbegf, Philip Jessmon Jan 2011

Human Trophoblast Survival And Invasion In The Developing Placenta: Autocrine Regulation By Hbegf, Philip Jessmon

Wayne State University Dissertations

HBEGF is a multifunctional protein in early pregnancy that induces cytotrophoblast (CTB) cell differentiation to an invasive phenotype, protects against apoptosis, and is involved in an autocrine signaling mechanism that leads to its own protein synthesis. CTBs exist in a low O2 environment during the first 10 weeks of implantation, during which they invade the decidualized uterine stroma. Inhibitors of intracellular signaling pathways demonstrated that at 20% O2 HBEGF induces an increase in cell migration through the ERK, MAPK14, JNK, or PIK3 pathways downstream of signaling through its ERBB receptors. Also downstream of these four pathways, HBEGF induces …


Functional In Vitro Analyses Of Lipid Raft-Associated Cathepsin B: Implication For The Invasive Phenotype Of Inflammatory Breast Cancer, Bernadette Caroline Victor Jan 2011

Functional In Vitro Analyses Of Lipid Raft-Associated Cathepsin B: Implication For The Invasive Phenotype Of Inflammatory Breast Cancer, Bernadette Caroline Victor

Wayne State University Dissertations

FUNCTIONAL IN VITRO ANALYSES OF LIPID RAFT-ASSOCIATED CATHEPSIN B: IMPLICATION FOR THE INVASIVE PHENOTYPE

OF INFLAMMATORY BREAST CANCER

by

BERNADETTE C. VICTOR

December 2011

Advisor: Dr. Bonnie F. Sloane

Major: Cancer Biology

Degree: Doctor of Philosophy

Inflammatory breast cancer (IBC) is an aggressive, metastatic and

highly angiogenic form of locally advanced breast cancer. Breast

cancer invasion has been linked to proteolytic activity at the tumor

cell surface. We observed that uPA, uPAR and enzymatically active

cathepsin B were all present in caveolae fractions isolated from

SUM149 cells. Using a live-cell proteolysis assay, we demonstrated

that both IBC cell lines degrade …


Mechanical Forces And Tumor Cells: Insight Into The Biophysical Aspects Of Cancer Progression, Indrajyoti Indra Jan 2011

Mechanical Forces And Tumor Cells: Insight Into The Biophysical Aspects Of Cancer Progression, Indrajyoti Indra

Wayne State University Dissertations

Mechanical forces play an important role in the regulation of cellular behavior and physiological processes including adhesion, migration, proliferation, tissue repair, embryogenesis and development. In addition, a number of diseases including cancer, have been linked to changes in cellular and extracellular mechanical properties. However, whether a correlation exists between the progression of cancer towards metastasis and mechanical factors has not been clearly defined. Additionally, how a cell responds to changes in extracellular mechanical cues as it gains metastatic abilities is poorly understood. To address these questions, we have utilized a panel of murine breast cancer cell lines with progressive metastatic. …


Induction And Regulation Of Autophagy By Novel Prenylation Inhibitors In Sts-26t Malignant Peripheral Nerve Sheath Tumor (Mpnst) Cells, Komal Madhukar Sane Jan 2010

Induction And Regulation Of Autophagy By Novel Prenylation Inhibitors In Sts-26t Malignant Peripheral Nerve Sheath Tumor (Mpnst) Cells, Komal Madhukar Sane

Wayne State University Dissertations

Prenylation pathways have been targeted via several different compounds that inhibit farnesyl transferase (FTase) and/or geranylgeranyl transferase (GGTase) enzymes in many cellular and animal models of cancer. Some of these have also been evaluated in clinical trials with limited success. Multiple mechanisms of action have been elucidated for such compounds, including cell cycle arrest, proteasome inhibition, apoptosis and most recently, autophagy. However, there is still an urgent need of effective agents of this class of anti-tumor therapeutics. In this dissertation, I sought to delve into this issue by characterizing our novel prenylation inhibitors and their potential as anti-tumor agents. Novel …


The Cellular And Genetic Mechanisms Underlying Morphological Diversity Of Insects, Nataliya Turchyn Jan 2010

The Cellular And Genetic Mechanisms Underlying Morphological Diversity Of Insects, Nataliya Turchyn

Wayne State University Dissertations

The vast diversity of insect appendages provides an excellent model for examining the cellular and molecular basis of phenotypic changes in nature. One of the hallmarks of evolution of insect appendages is the differential enlargement of hind (T3) legs compared to their fore (T1) and mid (T2) counterparts. While basic information regarding the genetic mechanisms that regulate the size of the T3 legs became available in the past several years, virtually nothing is known about cellular mechanisms involved. To address this issue, we measured the relative mitotic activity (RMA) in Acheta domesticus (house cricket) and Oncopeltus fasciatus (milkweed bug), two …


Regulatory And Functional Aspects Of Foxo3a Transcription Factor And Their Implications In Prostate Cancer, Melissa Elise Dobson Jan 2010

Regulatory And Functional Aspects Of Foxo3a Transcription Factor And Their Implications In Prostate Cancer, Melissa Elise Dobson

Wayne State University Dissertations

The P13K/Akt pathway is a critical mediator of growth factor signaling involving many cellular functions. The deregulation of this pathway has been shown to be involved in the development of various cancers. One of the main targets of this pathway is FoxO3a, a transcription factor whose target genes are involved in important cellular processes such as apoptosis, cell cycle control, and glucose metabolism. FoxO3a is regulated by various post translational modifications including acetylation, ubiquitination and phosphorylation. The transcription factor is directly phosphorylated by Akt on 3 residues: Threonine 32, Serine 253 and Serine 315. Phosphorylation by Akt generates binding sites …


Matriptase/Pdgf D/Beta-Pdgfr Signaling Axis In Human Prostate Cancer: The Role Of Pten In The Regulation Of Pdgf D Expression, M. Katie Conley-Lacomb Jan 2010

Matriptase/Pdgf D/Beta-Pdgfr Signaling Axis In Human Prostate Cancer: The Role Of Pten In The Regulation Of Pdgf D Expression, M. Katie Conley-Lacomb

Wayne State University Dissertations

Platelet Derived Growth Factor (PDGF) is a family of mesenchymal growth factors that regulate cell proliferation, migration, and differentiation. Unlike the classic PDGF ligands A and B, which are secreted as active dimers, PDGF D must undergo extracellular proteolytic processing to remove its N-terminal CUB domain from the C-terminal PDGF growth domain before the ligand is able to stimulate its receptor, PDGF receptor beta (?-PDGFR). Importantly, recent clinical studies have shown that ?-PDGFR is upregulated in primary prostate cancer and bone metastases. However, PDGF B, formerly thought to be the sole ligand for ?-PDGFR, is not expressed in clinical prostate …


Fine Structure Of The Substantia Nigra Pars Lateralis In The Opossum, Terrence Paul Ma Jan 1987

Fine Structure Of The Substantia Nigra Pars Lateralis In The Opossum, Terrence Paul Ma

Wayne State University Dissertations

The cytoarchitecture of the substantia nigra pars lateralis (SNl) of the opossum was examined by light and electron microscopic procedures. Nissl-stained, Golgi-impregnated, HRP-reacted and electron microscopic preparations were utilized in this study. SNl neurons were divided into three groups on the basis of cell size; small, medium-sized, and large neurons. Small cells had a nucleus with some clumped heterochromatin, a relatively organelle-free cytoplasm, and long, thin, sparcely branching dendrites. Electron microscopic examination of small cells confirmed the light microscopic observations. Medium-sized neurons possessed a relatively clear nucleus, clumps of Nissl substance, especially at a juxtanuclear position near the emergence of …