Transcriptional and Network Regulators of Neuronal Identity Specification and Synaptic Maturation

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Release : 2014
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Transcriptional and Network Regulators of Neuronal Identity Specification and Synaptic Maturation - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Transcriptional and Network Regulators of Neuronal Identity Specification and Synaptic Maturation write by Jeffrey Russ. This book was released on 2014. Transcriptional and Network Regulators of Neuronal Identity Specification and Synaptic Maturation available in PDF, EPUB and Kindle. To enact its many behaviors, an organism relies on a highly diverse network of neuronal subtypes. During development, it is therefore imperative that the identity of each subtype be correctly specified and that each of these neurons then wires with precise connectivity. The process of identity specification results from a delicate interplay between intrinsic and extrinsic influences during neuronal development. Intrinsically, a critical event in neuronal development is the expression of potent transcription factors that regulate the induction of a subtype-specific neuronal identity. One capability of such factors is to prime a neuron's connectivity by controlling features such as dendritic morphology, axonal targeting, or synaptic specificity. Once incorporated into the circuitry, the neuron relies on extrinsic signals from both its pre-and postsynaptic binding partners to further refine its identity. In this dissertation, I first examine intrinsic regulation of neuronal identity by studying the cell-autonomous capabilities of the subtype-specifying transcription factor Ptfl a to transform the development of cortical pyramidal cells. Ptfl a is primarily necessary for the identity specification of interneurons in the spinal cord, cerebellum, and retina, but its sufficiency to dictate neuronal identity outside its endogenous environment has yet to be fully explored. Using in utero electroporation to misexpress Ptfl a in the developing cortex, 1 demonstrate its ability to override the pyramidal cell transcriptome, upregulating Ptfl a-dependent markers of inhibitory interneurons and inducing a peptidergic neurotransmitter status. Concurrently, misexpression of Ptfl a also transforms the stereotypical pyramidal cell morphology to a more branched, radial morphology. To next explore the extrinsic regulation of neuronal identity, I examine the ability of the developing network to impact the characteristic synaptic protein profile of a population of spinal inhibitory interneurons, called GABApre neurons. I first show that putative GABApre neurons receive descending input from the cortex, via the corticospinal tract. I then use a mouse model of perinatal stroke to investigate how developmental disruption of corticospinal tract input in turn impacts GABApre synaptic expression. I observe a specific upregulation of the hallmark GABApre marker GAD65 contralateral to the cortical injury, implying that this effect is the result of lost input from the cortex.

Neuronal Identity from Fate Specification to Function

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Release : 2023-02-02
Genre : Science
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Book Rating : 239/5 ( reviews)

Neuronal Identity from Fate Specification to Function - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Neuronal Identity from Fate Specification to Function write by Nikolaos Konstantinides. This book was released on 2023-02-02. Neuronal Identity from Fate Specification to Function available in PDF, EPUB and Kindle.

Determinants of Neuronal Identity

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Release : 1992
Genre : Medical
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Determinants of Neuronal Identity - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Determinants of Neuronal Identity write by Marty Shankland. This book was released on 1992. Determinants of Neuronal Identity available in PDF, EPUB and Kindle. Determinants of Neuronal Identity brings together studies of a wide range of vertebrate and invertebrate organisms that highlight the determinants of neuronal identity. Emphasis of this book is on how neurons are generated; how their developmental identities are specified; and to what degree those identities can be subsequently modified to meet the changing needs of the organism. This book also considers various techniques used in the analysis of different organisms. This volume is comprised of 15 chapters; the first of which introduces the reader to the specification of neuronal identity in C ...

Development of Neural Circuitry

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Release : 2009-05-07
Genre : Medical
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Book Rating : 619/5 ( reviews)

Development of Neural Circuitry - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Development of Neural Circuitry write by . This book was released on 2009-05-07. Development of Neural Circuitry available in PDF, EPUB and Kindle. The nervous system is highly complex both in its structural order and in its ability to perform the many functions required for survival and interaction with the environment; understanding how it develops has proven to be one of the greatest challenges in biology. Such precision demands that key events at every developmental stage are executed properly and are coordinated to produce the circuitry underlying each of the adult nervous system's functions. This volume describes the latest research on the cellular and molecular mechanisms of neural circuitry development, while providing researchers with a one-stop overview and synthesis of contemporary thought in the area. Reviews current research findings on the development of neural circuitry, providing researchers with an overview and synthesis of the latest contemporary thought in the cellular and molecular mechanisms that underlie the development of neural circuitry Includes chapters discussing topics such as the guidance of nerve growth and the formation of plasticity of synapses, helping researchers better understand underlying mechanisms of neural circuit development and maintenance that may play a role in such human diseases/conditions as depression, anxiety, and pain Chapters make use of a variety of human and animal models, allowing researchers to compare and contrast neural circuitry development across a wide spectrum of models

PET-1 Switches Transcriptional Targets Postnatally to Regulate Maturation of Serotonin Neuron Excitability

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Release : 2015
Genre : Developmental biology
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PET-1 Switches Transcriptional Targets Postnatally to Regulate Maturation of Serotonin Neuron Excitability - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook PET-1 Switches Transcriptional Targets Postnatally to Regulate Maturation of Serotonin Neuron Excitability write by Steven Curtis Wyler. This book was released on 2015. PET-1 Switches Transcriptional Targets Postnatally to Regulate Maturation of Serotonin Neuron Excitability available in PDF, EPUB and Kindle. The tremendous diversity of neuronal cell types enables the assembly of neural circuitry that generates and shapes complex behaviors. In contrast to the intense focus on understanding the gene regulatory programs that specify different neuron types, the programs that guide their maturation have received far less attention. Here we show the embryonic maturation of serotonergic (5-HT) neurons, and the role of the transcription factor, PET-1 in driving this maturational program. Initally we undertook a series of experiments to define PET-1’s function in development and the early postnatal period. To this end, we used RNA-Seq in flow sorted fetal YFP+ 5-HT neurons obtained from the rostral hindbrain to identify specific temporal gene expression patterns found in maturing 5-HT neurons from E11.5 to shortly after birth (P1-P3). We found that genes downregulated from E11.5 to birth were genes associated with basic cellular processes, while genes upregulated were associated with maturing neural identity and function. Next we compared the expression profile of E15.5 +/+ and Pet-1-/- 5-HT neurons. Expression of over 800 genes was diminished 1.5-40 fold, and greater than 1000 genes were derepressed 1.5-13 fold in Pet-1-/- 5-HT neurons. Gene ontology shows that PET-1 is a regulator of diverse pathways including cell synaptic development and function, axon and dendrite development, and neural transmission. The role of PET-1’s in driving maturation of genes involved in neuronal excitability was verified by single cell recording of 5-HT neurons. Aditionally, PET-1 was found to regulate the glutamatergic AMPA receptor subunit Gria4, the alpha adrenergic receptor 1b, Adra1b, and the lysophosphtidic acid receptor 1, Lpar1. This was verified by in situ hybridization, immunohistochemistry, and electorphysiological recordings. Finally, to ascertain PET-1’s postnatal function, we deleted Pet-1 in the early postnatal period using the Cre/loxP system. This revealed PET-1 switches its focus on regulating genes needed for 5-HT synthesis to those needed for neuronal activity. Finally, we used ChIP-seq to identify PET-1 direct targets. We found PET-1 binds within or proximal to 25-30% of PET-1 upregulated and down regulated genes, suggesting direct transcriptional activation and repression of PET-1 is required for correct 5-HT development.