1.A novel CARD containing splice-isoform of CIITA regulates nitric oxide synthesis in dendritic cells.
Dachuan HUANG ; Sylvia LIM ; Rong Yuan Ray CHUA ; Hong SHI ; Mah Lee NG ; Siew Heng WONG
Protein & Cell 2010;1(3):291-306
MHC class II expression is controlled mainly at transcriptional level by class II transactivator (CIITA), which is a non-DNA binding coactivator and serves as a master control factor for MHC class II genes expression. Here, we describe the function of a novel splice-isoform of CIITA, DC-expressed caspase inhibitory isoform of CIITA (or DC-CASPIC), and we show that the expression of DCCASPIC in DC is upregulated upon lipopolysaccharides (LPS) induction. DC-CASPIC localizes to mitochondria, and protein-protein interaction study demonstrates that DC-CASPIC interacts with caspases and inhibits its activity in DC. Consistently, DC-CASPIC suppresses caspases-induced degradation of nitric oxide synthase-2 (NOS2) and subsequently promotes the synthesis of nitric oxide (NO). NO is an essential regulatory molecule that modulates the capability of DC in stimulating T cell proliferation/activation in vitro; hence, overexpression of DC-CASPIC in DC enhances this stimulation. Collectively, our findings reveal that DC-CASPIC is a key molecule that regulates caspases activity and NO synthesis in DC.
Alternative Splicing
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Amino Acid Sequence
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Animals
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Base Sequence
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CARD Signaling Adaptor Proteins
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genetics
;
metabolism
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Cell Line
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Dendritic Cells
;
drug effects
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immunology
;
metabolism
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Humans
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In Vitro Techniques
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Lipopolysaccharides
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pharmacology
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Lymphocyte Activation
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Mice
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Mice, Inbred C57BL
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Mitochondria
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metabolism
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Molecular Sequence Data
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Nitric Oxide
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biosynthesis
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Nitric Oxide Synthase Type II
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metabolism
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Nuclear Proteins
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genetics
;
metabolism
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Protein Isoforms
;
genetics
;
metabolism
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RNA, Messenger
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genetics
;
metabolism
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T-Lymphocytes
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immunology
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metabolism
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Trans-Activators
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genetics
;
metabolism
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Up-Regulation
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drug effects
2.Radiographic features of COVID-19 based on an initial cohort of 96 patients in Singapore.
Hau Wei Wei KHOO ; Terrence Chi Hong HUI ; Salahudeen Mohamed Haja MOHIDEEN ; Yeong Shyan LEE ; Charlene Jin Yee LIEW ; Shawn Shi Xian KOK ; Barnaby Edward YOUNG ; Sean Wei Xiang ONG ; Shirin KALIMUDDIN ; Seow Yen TAN ; Jiashen LOH ; Lai Peng CHAN ; Angeline Choo Choo POH ; Steven Bak Siew WONG ; Yee-Sin LEO ; David Chien LYE ; Gregory Jon Leng KAW ; Cher Heng TAN
Singapore medical journal 2021;62(9):458-465
INTRODUCTION:
Chest radiographs (CXRs) are widely used for the screening and management of COVID-19. This article describes the radiographic features of COVID-19 based on an initial national cohort of patients.
METHODS:
This is a retrospective review of swab-positive patients with COVID-19 who were admitted to four different hospitals in Singapore between 22 January and 9 March 2020. Initial and follow-up CXRs were reviewed by three experienced radiologists to identify the predominant pattern and distribution of lung parenchymal abnormalities.
RESULTS:
In total, 347 CXRs of 96 patients were reviewed. Initial CXRs were abnormal in 41 (42.7%) out of 96 patients. The mean time from onset of symptoms to CXR abnormality was 5.3 ± 4.7 days. The predominant pattern of lung abnormality was ground-glass opacity on initial CXRs (51.2%) and consolidation on follow-up CXRs (51.0%). Multifocal bilateral abnormalities in mixed central and peripheral distribution were observed in 63.4% and 59.2% of abnormal initial and follow-up CXRs, respectively. The lower zones were involved in 90.2% of initial CXRs and 93.9% of follow-up CXRs.
CONCLUSION
In a cohort of swab-positive patients, including those identified from contact tracing, we found a lower incidence of CXR abnormalities than was previously reported. The most common pattern was ground-glass opacity or consolidation, but mixed central and peripheral involvement was more common than peripheral involvement alone.
COVID-19
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Humans
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Lung/diagnostic imaging*
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Radiography, Thoracic
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Retrospective Studies
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SARS-CoV-2
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Singapore