1.Research on physiological function of CD47.
Journal of Experimental Hematology 2003;11(4):437-440
CD47, also known as integrin-associated protein (IAP), is an ubiquitously expressed 50 kD cell membrane glycoprotein. This article reviews that as an integrin-associated molecule, CD47 regulates a series of integrin-dependent cell functions; CD47 regulates cell adhesiveness, migration and activation and platelet aggregation through binding to thrombospondins; CD7 is the extracellular ligand for human signal-regulatory proteins, thus it causes negative regulatory effect; CD47 induces costimulatory signals on activation of T cell, T cell apoptosis and T cell anergy and enhances the efficiency of TCR signaling; CD47 is a member of Rh antigen complex. CD47 is involved in stroma-supported erythropoiesis. This review also discussed that CD47 as a marker on red blood cells, associated with haemolysis, which provides a new way to recognize, diagnose, and treat diseases.
Animals
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Antigens, CD
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physiology
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CD47 Antigen
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Carrier Proteins
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physiology
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Humans
3.Role of sulfogalactosylglycerolipid and sulfolipidimmobilizing protein 1 in sperm-egg plasma membrane interaction.
Xiao-Mei FENG ; Jun-Jun WANG ; Yu-Feng HUANG
National Journal of Andrology 2003;9(9):697-699
Sperm-egg plasma membrane interaction is one of the important steps of mammalian fertilization. Many sperm and egg surface proteins are reported to be involved in sperm-zona pellucida interaction. Sulfogalactosylglycerolipid(SGG) is the major sulfoglycolipid in the germ cells of mammalian and lower vertebrates, mainly in the sperm head. It is a differentiation marker in spermatogenesis restricted to the zygotene and early pachytene spermatocytes. Sulfolipidimmobilizing protein 1 (SLIP1) is the major sulfoglycolipid of mammalian germ cells and eggs, with the same localization as SGG in the sperm. SLIP1 binds specificity to SGG, both playing a vital role in sperm-egg interaction. This article is aimed at reviewing the localization of SGG and SLIP1 in the germ cell surface and their role and related mechanism in gamete formation.
Animals
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Carrier Proteins
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physiology
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Cell Membrane
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physiology
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Female
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Galactolipids
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physiology
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Humans
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Male
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Sperm-Ovum Interactions
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physiology
4.Research progress of the molecule mechanisms of Ebola virus infection of cells.
Chinese Journal of Virology 2013;29(1):71-75
Ebola virus can cause severe Ebola hemorrhagic fever. The mortality rate is 90 percent. Up till now, there is no effective vaccine or treatment of Ebola virus infection. Relaed researches on Ebola virus have become a hot topic in virology. The understanding of molecular mechanisms of Ebola virus infection of cells are important for the development of vaccine and anti-virus drugs. Therefore, this review summarized the recent research progress on the mechanisms of Ebola virus infection.
Carrier Proteins
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physiology
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Ebolavirus
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pathogenicity
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Hemorrhagic Fever, Ebola
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etiology
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Humans
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Membrane Fusion
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Membrane Glycoproteins
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physiology
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Pinocytosis
5.Research advance on placental iron transport proteins.
Jin-Ying ZHAO ; Ze-Zhi HUANG ; Yan-Wei LI
Chinese Journal of Contemporary Pediatrics 2009;11(6):510-513
Animals
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Antimicrobial Cationic Peptides
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physiology
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Carrier Proteins
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physiology
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Cation Transport Proteins
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physiology
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Ceruloplasmin
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physiology
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Female
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Ferritins
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physiology
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Hemochromatosis Protein
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Hepcidins
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Histocompatibility Antigens Class I
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physiology
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Humans
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Iron
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metabolism
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Iron-Regulatory Proteins
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physiology
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Membrane Proteins
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physiology
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Placenta
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metabolism
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Pregnancy
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Transferrin
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physiology
6.Sepsis and membrane receptors.
Zhao-xia DUAN ; Pei-fang ZHU ; Jian-xin JIANG
Chinese Journal of Traumatology 2005;8(1):60-64
7.PICK1 is associated with central nervous system diseases.
Journal of Zhejiang University. Medical sciences 2009;38(6):649-654
PICK1 (protein interacting with C kinase 1) contains a PDZ (PSD-95/Dlg/ZO1) domain and a BAR (Bin/amphiphysin/Rvs) domain. Via the PDZ domain, PICK1 interacts directly with more than 40 proteins. Among these interacting proteins, some are important for physiological and pathophysiological processes of central nervous system. In this review, recent findings about how PICK1 is associated with central nervous system diseases are summarize.
Animals
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Carrier Proteins
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chemistry
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metabolism
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physiology
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Epilepsy
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metabolism
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Humans
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Nuclear Proteins
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chemistry
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metabolism
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physiology
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Schizophrenia
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metabolism
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Stroke
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metabolism
8.Advances in the research of sperm protein 17.
National Journal of Andrology 2004;10(4):295-301
Sperm protein 17 (Sp17) is a testis-specific protein involved in acrosome reaction in spermatozoa. However, the Sp17 gene has been recently detected in normal non-testis tissues and malignant neoplasias. Therefore Sp17 may be a potential target for immunocontraception and a suitable target for tumor immunotherapy. This paper reviews the advances in the protein characterization, expression and distribution, and biological function of Sp17 and its clinical research.
Animals
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Antigens, Surface
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Carrier Proteins
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analysis
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physiology
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Contraception, Immunologic
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Humans
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Immunotherapy
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Male
9.Expression of leptin receptor (Ob-R) in human atherosclerotic lesions: potential role in intimal neovascularization.
Seok Min KANG ; Hyuck Moon KWON ; Bum Kee HONG ; Dongsoo KIM ; In Jai KIM ; Eui Young CHOI ; Yangsoo JANG ; Hyun Seung KIM ; Myung Sin KIM ; Hyuck Chan KWON
Yonsei Medical Journal 2000;41(1):68-75
Neovascularization of the adventitial vasa vasorum with extension into the intima of atherosclerotic lesions is frequently observed, but its pathophysiological significance is still subject to debate. Recently, leptin, the product of the Ob gene, was identified. Leptin, via activation of the endothelial receptor (Ob-R), generates a growth signal involving a tyrosine kinase-dependent intracellular pathway and promotes angiogenic processes. We hypothesized that a high concentration of leptin within vasa vasorum and plaque itself, may influence inflammatory and vascular neovascularization coupling with functional upregulation of the vascular endothelial growth factor (VEGF). Microscopic computerized tomography was utilized for the spatial distribution of vasa vasorum and intimal neovascularization from atherosclerotic human coronary arteries. Atherosclerotic coronary arteries showed a dense plexus of microvessels in the adventitia and plaque itself. Microscopic analysis from human atherosclerotic aortas revealed an increase in the intimal thickness with neovascularization. The immunoreactivity for Ob-R, VEGF and matrix metalloproteinase (MMP) increased in atherosclerotic plaque, predominantly in the endothelial lining of the intimal neovessel and macrophages/foam cells. Our observation of a prominent colocalization between Ob-R, VEGF and MMP supports this hypothesis and these factors participate in the neovascularization of atherosclerotic lesions. The present study is the first report on vascular tissue and it opens a promising perspective concerning future investigations of leptin-dependent modulation of atherogenesis and vascular neovascularization under pathophysiolgical conditions.
Adult
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Arteriosclerosis/physiopathology
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Arteriosclerosis/pathology
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Arteriosclerosis/metabolism*
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Blood Vessels/pathology
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Blood Vessels/metabolism
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Carrier Proteins/physiology
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Carrier Proteins/metabolism*
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Human
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Middle Age
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Neovascularization, Pathologic/physiopathology
10.What we know about ST13, a co-factor of heat shock protein, or a tumor suppressor?
Zheng-zheng SHI ; Jia-wei ZHANG ; Shu ZHENG
Journal of Zhejiang University. Science. B 2007;8(3):170-176
This article is to summarize the molecular and functional analysis of the gene "suppression of tumorigenicity 13" (ST13). ST13 is in fact the gene encoding Hsp70 interacting protein (Hip), a co-factor (co-chaperone) of the 70-kDa heat shock proteins (Hsc/Hsp70). By collaborating with other positive co-factors such as Hsp40 and the Hsp70-Hsp90 organizing protein (Hop), or competing with negative co-factors such as Bcl2-associated athanogen 1 (Bag1), Hip facilitates may facilitate the chaperone function of Hsc/Hsp70 in protein folding and repair, and in controlling the activity of regulatory proteins such as steroid receptors and regulators of proliferation or apoptosis. Although the nomenclature of ST13 implies a role in the suppression of tumorigenicity (ST), to date available experimental data are not sufficient to support its role in cancer development, except for the possible down-regulation of ST13 in gastric and colorectal cancers. Further investigation of this gene at the physiological level would benefit our understanding of diseases such as endocrinological disorders, cancer, and neurodegeneration commonly associated with protein misfolding.
Adenosine Triphosphate
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metabolism
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Animals
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Carrier Proteins
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chemistry
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genetics
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physiology
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Cloning, Molecular
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HSP70 Heat-Shock Proteins
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metabolism
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Humans
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Protein Folding
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Tumor Suppressor Proteins
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chemistry
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genetics
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physiology