Results 261 to 270 of about 3,908,770 (297)
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Targeting proteins to the plant nuclear envelope

Biochemical Society Transactions, 2010
The nuclear envelope and the nuclear pore are important structures that both separate and selectively connect the nucleoplasm and the cytoplasm. The requirements for specific targeting of proteins to the plant nuclear envelope and nuclear pore are poorly understood.
Iris, Meier   +5 more
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Envelope Protein of Influenza Virus

Archives of Environmental Health: An International Journal, 1970
Immunological characteristics of envelope protein derivatives have been tested in the mouse. In contrast to the identity of the serological reactions of whole virus and the several forms of envelope protein, the hemagglutination inhibition titers of the sera of immunized mice varied markedly depending on the nature of the inoculum. One type of envelope
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Reconstitution of Recombinant Viral Envelope Proteins

2003
Publisher Summary Liposomes comprising lipid bilayer membranes enclosing aqueous internal compartments serve as attractive models for reconstitution of a variety of membrane proteins such as viral envelope proteins. The lipid membranes consist of amphipathic lipids that are similar to those found in authentic cell membranes.
Christian, Oker-Blom, Matti, Vuento
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Microbial Envelope Proteins Related to Iron

Annual Review of Microbiology, 1982
INTRODUCTION AND SCOPE ...... 285 THE VITAMIN BJ2 CONNECTION 289 THE ENVELOPE OF GRAM·NEGATIVE BACTERIA 289 FERRICHROME RECEPTOR 29 1 FERRIC ENTEROBACTIN RECEPTOR 293 FERRIC CITRATE RECEPTOR ..... 297 CITRATE-HYDROXAMATE SIDEROPHORES 297 TONB 299 AGROBA CTERIUM TUMEFA CIENS AND PARA COCCUS DENITRIFICANS 300 VIBRIO SPP. 301
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Nuclear envelope proteins and associated diseases

Current Opinion in Neurology, 2000
There is a growing body of evidence in favour of the presence of human diseases caused by mutations in genes that encode the nuclear envelope proteins emerin and lamin A/C (lamin A and C are alternatively spliced variants of the same gene). Emerin deficiency results in X-linked Emery-Dreifuss muscular dystrophy (EDMD).
A, Nagano, K, Arahata
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Proteomic analysis of Singapore grouper iridovirus envelope proteins and characterization of a novel envelope protein VP088

PROTEOMICS, 2011
AbstractSingapore grouper iridovirus (SGIV) is an enveloped virus causing heavy economic losses to marine fish culture. The envelope fractions of SGIV were separated from the purified virions by Triton X‐100 treatment, and subjected to 1‐DE‐MALDI‐TOF/TOF‐MS/MS and LC‐MALDI‐TOF/TOF‐MS/MS analysis.
Zhou, S.   +8 more
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Inactivation of Lipid-Enveloped Viruses in Proteins by Caprylate

Vox Sanguinis, 1991
Abstract. The use of caprylate for the inactivation of lipid‐enveloped viruses in biologically active proteins both plasma derived and produced by cell culture was evaluated. Viruses consisted of herpes simplex virus type I, vesicular stomatitis virus, vaccinia virus, and Sindbis virus. Utilizing the dissociation reaction and varying the concentration
J L, Lundblad, R L, Seng
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On the translocation of proteins across the chloroplast envelope

Journal of Bioenergetics and Biomembranes, 1990
Most of the chloroplast proteins are coded for in the nucleus and are synthesized in the cytosol from where they are subsequently transported into the different chloroplast compartments. The structural properties of the N-terminal extensions (transit peptides) of these nuclear-coded precursor proteins are discussed as well as the energy requirements ...
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Analysis of HCV Envelope Proteins Interacting with Human Proteins

2007 Frontiers in the Convergence of Bioscience and Information Technologies, 2007
Despite much progress in clinical and basic research on hepatitis C virus (HCV), interactions between HCV proteins and human proteins is not fully understood. HCV envelope proteins have many cellular targets in human proteins and affect several biological functions.
Chirag Nepal, Kyungsook Han
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On The Role of Viral Envelope Proteins in Pathogenesis

1984
The paramyxovirus envelope contains two surface glycoproteins (HN and F) and an internal non-glycosylated protein (M). The F protein is involved in viral pathogenesis in three different ways, each related to its ability to cause membrane fusion, which mediates virus penetration, cell fusion, and hemolysis. 1.
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