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Transmembrane Signaling by Icn Ucla Symposium On Transmembrane Signaling (1978 Keystone, Colo.)
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1DTIC ADA265837: Regulation Of TCR Signaling By CD45 Lacking Transmembrane And Extracellular Domains
By Defense Technical Information Center
The CD45 protein is a transmembrane tyrosine phosphatase that is required for normal cell receptor (TCR)-mediated signaling. A chimeric complementary DNA encoding the intracellular enzymatically active portion of murine CD45 preceded by a short amino-terminal sequence from p60 c-src was transfected into CD45 minusT cells. Expression of this chimeric protein corrected most of the TCR signaling abnormalities observed in the absence of CD45, including TCR-mediated enhancement of tyrosine kinase activity and Ca 2+ flux. Thus, the enzymatically active intracellular portion of CD45 is sufficient to allow TCR transmembrane signaling
“DTIC ADA265837: Regulation Of TCR Signaling By CD45 Lacking Transmembrane And Extracellular Domains” Metadata:
- Title: ➤ DTIC ADA265837: Regulation Of TCR Signaling By CD45 Lacking Transmembrane And Extracellular Domains
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA265837: Regulation Of TCR Signaling By CD45 Lacking Transmembrane And Extracellular Domains” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Volarevic, Sinisa - NAVAL MEDICAL RESEARCH INST BETHESDA MD - *BIOCHEMISTRY - REPRINTS - MEDICAL RESEARCH - RECEPTOR SITES(PHYSIOLOGY) - CELL STRUCTURE - TYROSINE
Edition Identifiers:
- Internet Archive ID: DTIC_ADA265837
Downloads Information:
The book is available for download in "texts" format, the size of the file-s is: 9.02 Mbs, the file-s for this book were downloaded 52 times, the file-s went public at Sun Mar 11 2018.
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2Disruption Of Interleukin-1? Autocrine Signaling Rescues Complex I Activity And Improves ROS Levels In Immortalized Epithelial Cells With Impaired Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) Function.
By Clauzure, Mariangeles, Valdivieso, Angel G., Massip Copiz, Maria M., Schulman, Gustavo, Teiber, Maria Luz and Santa-Coloma, Tomas A.
This article is from PLoS ONE , volume 9 . Abstract Patients with cystic fibrosis (CF) have elevated concentration of cytokines in sputum and a general inflammatory condition. In addition, CF cells in culture produce diverse cytokines in excess, including IL-1β. We have previously shown that IL-1β, at low doses (∼30 pM), can stimulate the expression of CFTR in T84 colon carcinoma cells, through NF-κB signaling. However, at higher doses (>2.5 ng/ml, ∼150 pM), IL-1β inhibit CFTR mRNA expression. On the other hand, by using differential display, we found two genes with reduced expression in CF cells, corresponding to the mitochondrial proteins CISD1 and MTND4. The last is a key subunit for the activity of mitochondrial Complex I (mCx-I); accordingly, we later found a reduced mCx-I activity in CF cells. Here we found that IB3-1 cells (CF cells), cultured in serum-free media, secrete 323±5 pg/ml of IL-1β in 24 h vs 127±3 pg/ml for S9 cells (CFTR-corrected IB3-1 cells). Externally added IL-1β (5 ng/ml) reduces the mCx-I activity and increases the mitochondrial (MitoSOX probe) and cellular (DCFH-DA probe) ROS levels of S9 (CFTR-corrected IB3-1 CF cells) or Caco-2/pRSctrl cells (shRNA control cells) to values comparable to those of IB3-1 or Caco-2/pRS26 cells (shRNA specific for CFTR). Treatments of IB3-1 or Caco-2/pRS26 cells with either IL-1β blocking antibody, IL-1 receptor antagonist, IKK inhibitor III (NF-κB pathway) or SB203580 (p38 MAPK pathway), restored the mCx-I activity. In addition, in IB3-1 or Caco-2/pRS26 cells, IL-1β blocking antibody, IKK inhibitor III or SB203580 reduced the mitochondrial ROS levels by ∼50% and the cellular ROS levels near to basal values. The AP-1 inhibitors U0126 (MEK1/2) or SP600125 (JNK1/2/3 inhibitor) had no effects. The results suggest that in these cells IL-1β, through an autocrine effect, acts as a bridge connecting the CFTR with the mCx-I activity and the ROS levels.
“Disruption Of Interleukin-1? Autocrine Signaling Rescues Complex I Activity And Improves ROS Levels In Immortalized Epithelial Cells With Impaired Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) Function.” Metadata:
- Title: ➤ Disruption Of Interleukin-1? Autocrine Signaling Rescues Complex I Activity And Improves ROS Levels In Immortalized Epithelial Cells With Impaired Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) Function.
- Authors: ➤ Clauzure, MariangelesValdivieso, Angel G.Massip Copiz, Maria M.Schulman, GustavoTeiber, Maria LuzSanta-Coloma, Tomas A.
- Language: English
Edition Identifiers:
- Internet Archive ID: pubmed-PMC4047112
Downloads Information:
The book is available for download in "texts" format, the size of the file-s is: 17.97 Mbs, the file-s for this book were downloaded 83 times, the file-s went public at Tue Oct 21 2014.
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3Transmembrane Signaling Protocols
This article is from PLoS ONE , volume 9 . Abstract Patients with cystic fibrosis (CF) have elevated concentration of cytokines in sputum and a general inflammatory condition. In addition, CF cells in culture produce diverse cytokines in excess, including IL-1β. We have previously shown that IL-1β, at low doses (∼30 pM), can stimulate the expression of CFTR in T84 colon carcinoma cells, through NF-κB signaling. However, at higher doses (>2.5 ng/ml, ∼150 pM), IL-1β inhibit CFTR mRNA expression. On the other hand, by using differential display, we found two genes with reduced expression in CF cells, corresponding to the mitochondrial proteins CISD1 and MTND4. The last is a key subunit for the activity of mitochondrial Complex I (mCx-I); accordingly, we later found a reduced mCx-I activity in CF cells. Here we found that IB3-1 cells (CF cells), cultured in serum-free media, secrete 323±5 pg/ml of IL-1β in 24 h vs 127±3 pg/ml for S9 cells (CFTR-corrected IB3-1 cells). Externally added IL-1β (5 ng/ml) reduces the mCx-I activity and increases the mitochondrial (MitoSOX probe) and cellular (DCFH-DA probe) ROS levels of S9 (CFTR-corrected IB3-1 CF cells) or Caco-2/pRSctrl cells (shRNA control cells) to values comparable to those of IB3-1 or Caco-2/pRS26 cells (shRNA specific for CFTR). Treatments of IB3-1 or Caco-2/pRS26 cells with either IL-1β blocking antibody, IL-1 receptor antagonist, IKK inhibitor III (NF-κB pathway) or SB203580 (p38 MAPK pathway), restored the mCx-I activity. In addition, in IB3-1 or Caco-2/pRS26 cells, IL-1β blocking antibody, IKK inhibitor III or SB203580 reduced the mitochondrial ROS levels by ∼50% and the cellular ROS levels near to basal values. The AP-1 inhibitors U0126 (MEK1/2) or SP600125 (JNK1/2/3 inhibitor) had no effects. The results suggest that in these cells IL-1β, through an autocrine effect, acts as a bridge connecting the CFTR with the mCx-I activity and the ROS levels.
“Transmembrane Signaling Protocols” Metadata:
- Title: ➤ Transmembrane Signaling Protocols
- Language: English
“Transmembrane Signaling Protocols” Subjects and Themes:
- Subjects: ➤ Cellular signal transduction -- Laboratory manuals - Signal Transduction -- Laboratory Manuals - GTP-Binding Proteins -- physiology -- Laboratory Manuals
Edition Identifiers:
- Internet Archive ID: transmembranesig0332unse
Downloads Information:
The book is available for download in "texts" format, the size of the file-s is: 851.44 Mbs, the file-s for this book were downloaded 42 times, the file-s went public at Fri May 08 2020.
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ACS Encrypted EPUB - ACS Encrypted PDF - Abbyy GZ - Cloth Cover Detection Log - DjVuTXT - Djvu XML - Dublin Core - EPUB - Item Tile - JPEG Thumb - JSON - LCP Encrypted EPUB - LCP Encrypted PDF - Log - MARC - MARC Binary - Metadata - OCR Page Index - OCR Search Text - PNG - Page Numbers JSON - Scandata - Single Page Original JP2 Tar - Single Page Processed JP2 ZIP - Text PDF - Title Page Detection Log - chOCR - hOCR -
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4G-protein Coupled Transmembrane Signaling Mechanisms
This article is from PLoS ONE , volume 9 . Abstract Patients with cystic fibrosis (CF) have elevated concentration of cytokines in sputum and a general inflammatory condition. In addition, CF cells in culture produce diverse cytokines in excess, including IL-1β. We have previously shown that IL-1β, at low doses (∼30 pM), can stimulate the expression of CFTR in T84 colon carcinoma cells, through NF-κB signaling. However, at higher doses (>2.5 ng/ml, ∼150 pM), IL-1β inhibit CFTR mRNA expression. On the other hand, by using differential display, we found two genes with reduced expression in CF cells, corresponding to the mitochondrial proteins CISD1 and MTND4. The last is a key subunit for the activity of mitochondrial Complex I (mCx-I); accordingly, we later found a reduced mCx-I activity in CF cells. Here we found that IB3-1 cells (CF cells), cultured in serum-free media, secrete 323±5 pg/ml of IL-1β in 24 h vs 127±3 pg/ml for S9 cells (CFTR-corrected IB3-1 cells). Externally added IL-1β (5 ng/ml) reduces the mCx-I activity and increases the mitochondrial (MitoSOX probe) and cellular (DCFH-DA probe) ROS levels of S9 (CFTR-corrected IB3-1 CF cells) or Caco-2/pRSctrl cells (shRNA control cells) to values comparable to those of IB3-1 or Caco-2/pRS26 cells (shRNA specific for CFTR). Treatments of IB3-1 or Caco-2/pRS26 cells with either IL-1β blocking antibody, IL-1 receptor antagonist, IKK inhibitor III (NF-κB pathway) or SB203580 (p38 MAPK pathway), restored the mCx-I activity. In addition, in IB3-1 or Caco-2/pRS26 cells, IL-1β blocking antibody, IKK inhibitor III or SB203580 reduced the mitochondrial ROS levels by ∼50% and the cellular ROS levels near to basal values. The AP-1 inhibitors U0126 (MEK1/2) or SP600125 (JNK1/2/3 inhibitor) had no effects. The results suggest that in these cells IL-1β, through an autocrine effect, acts as a bridge connecting the CFTR with the mCx-I activity and the ROS levels.
“G-protein Coupled Transmembrane Signaling Mechanisms” Metadata:
- Title: ➤ G-protein Coupled Transmembrane Signaling Mechanisms
- Language: English
“G-protein Coupled Transmembrane Signaling Mechanisms” Subjects and Themes:
- Subjects: ➤ Adrenerger Rezeptor - Neurotransmitter - Arzneimittel - Zellkommunikation - Rezeptor - Récepteurs cellulaires - Médicaments - Médicaments -- Récepteurs - Neurotransmitter receptors - Drug receptors - Receptors, Neurotransmitter -- physiology - Cell receptors - Signal Transduction -- physiology - GTP-Binding Proteins -- metabolism - Récepteurs médicaments - Protéines G
Edition Identifiers:
- Internet Archive ID: gproteincoupledt0000unse
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The book is available for download in "texts" format, the size of the file-s is: 590.99 Mbs, the file-s for this book were downloaded 25 times, the file-s went public at Thu May 21 2020.
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5ER-mediated Control For Abundance, Quality, And Signaling Of Transmembrane Immune Receptors In Plants.
By Tintor, Nico and Saijo, Yusuke
This article is from Frontiers in Plant Science , volume 5 . Abstract Plants recognize a wide range of microbes with cell-surface and intracellular immune receptors. Transmembrane pattern recognition receptors (PRRs) initiate immune responses upon recognition of cognate ligands characteristic of microbes or aberrant cellular states, designated microbe-associated molecular patterns or danger-associated molecular patterns (DAMPs), respectively.Pattern-triggered immunity provides a first line of defense that restricts the invasion and propagation of both adapted and non-adapted pathogens. Receptor kinases (RKs) and receptor-like proteins (RLPs) with an extracellular leucine-rich repeat or lysine-motif (LysM) domain are extensively used as PRRs. The correct folding of the extracellular domain of these receptors is under quality control (QC) in the endoplasmic reticulum (ER), which thus provides a critical step in plant immunity. Genetic and structural insight suggests that ERQC regulates not only the abundance and quality of transmembrane receptors but also affects signal sorting between multi-branched pathways downstream of the receptor. However, ERQC dysfunction can also positively stimulate plant immunity, possibly through cell death and DAMP signaling pathways.
“ER-mediated Control For Abundance, Quality, And Signaling Of Transmembrane Immune Receptors In Plants.” Metadata:
- Title: ➤ ER-mediated Control For Abundance, Quality, And Signaling Of Transmembrane Immune Receptors In Plants.
- Authors: Tintor, NicoSaijo, Yusuke
- Language: English
Edition Identifiers:
- Internet Archive ID: pubmed-PMC3933923
Downloads Information:
The book is available for download in "texts" format, the size of the file-s is: 7.09 Mbs, the file-s for this book were downloaded 119 times, the file-s went public at Thu Oct 23 2014.
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