نتایج جستجو برای: coat protein

تعداد نتایج: 1247898  

Journal: :Current Biology 2010
Peter T. McKenney Adam Driks Haig A. Eskandarian Paul Grabowski Jonathan Guberman Katherine H. Wang Zemer Gitai Patrick Eichenberger

Bacillus subtilis spores are encased in a protein assembly called the spore coat that is made up of at least 70 different proteins. Conventional electron microscopy shows the coat to be organized into two distinct layers. Because the coat is about as wide as the theoretical limit of light microscopy, quantitatively measuring the localization of individual coat proteins within the coat is challe...

2002
S. B. Ghosh L. H. S. Nagi T. R. Ganapathi S. M. Paul Khurana V. A. Bapat

Potato virus Y (PVY) coat protein gene has been cloned from an Indian isolate of PVY. The coat protein gene from this isolate showed 93.2% nucleic acid sequence homology and more than 94% amino acid sequence homology compared to an American isolate. The coat protein gene has been sub-cloned into plant expression vector pBINPLUS and tobacco leaf discs were transformed using Agrobacterium tumefac...

Journal: :the iranian journal of pharmaceutical research 0
neda eslami 1- department of pharmaceutics, school of pharmacy, shahid beheshti university of medical sciences, tehran, iran. 2- department of biology, school of sciences, alzahra university of basic sciences, tehran, iran. rouha kasra kermanshahi department of biology, school of sciences, alzahra university of basic sciences, tehran, iran. mohammad erfan department of pharmaceutics, school of pharmacy, shahid beheshti university of medical sciences, tehran, iran.

crystalline arrays of proteinaceous subunits forming surface layers (s-layers) are now recognized as one of the most common outermost cell envelope components of prokaryotic organisms. the surface layer protein of lactobacillus acidophilus atcc4356 is composed of a single species of protein of apparent molecular weight of 43-46 kda. considering the lactobacillus acidophilus atcc4356 having the ...

Journal: :journal of crop protection 2013
amir amiri sadeghan masoud shams-bakhsh bagher yakhchali

citrus tristeza virus (ctv) is among the most destructive pathogens of citrus and causes substantial economic losses in citrus-growing industry worldwide. considering recent distribution of this pathogen and its capability of transmission by existing aphid vectors in iran, detection of this virus is enforceable for controlling the damage caused by this pathogen in iran, as one of the major citr...

Journal: :Protein science : a publication of the Protein Society 2000
G A Weiss J A Wells S S Sidhu

We have reported variants of the M13 bacteriophage major coat protein (P8) that enable high copy display of monomeric and oligomeric proteins, such as human growth hormone and steptavidin, on the surface of phage particles (Sidhu SS, Weiss GA, Wells JA. 2000. High copy display of large proteins on phage for functional selections. J Mol Biol 296:487-495). Here, we explore how an optimized P8 var...

Journal: :Journal of bacteriology 2007
Rebecca Giorno Joel Bozue Christopher Cote Theresa Wenzel Krishna-Sulayman Moody Michael Mallozzi Matthew Ryan Rong Wang Ryszard Zielke Janine R Maddock Arthur Friedlander Susan Welkos Adam Driks

Bacillus spp. and Clostridium spp. form a specialized cell type, called a spore, during a multistep differentiation process that is initiated in response to starvation. Spores are protected by a morphologically complex protein coat. The Bacillus anthracis coat is of particular interest because the spore is the infective particle of anthrax. We determined the roles of several B. anthracis orthol...

Journal: :Cell stress & chaperones 2007
Kristin N Parent Carolyn M Teschke

Phage P22 wild-type (WT) coat protein does not require GroEL/S to fold but temperature-sensitive-folding (tsf) coat proteins need the chaperone complex for correct folding. WT coat protein and all variants absolutely require P22 scaffolding protein, an assembly chaperone, to assemble into precursor structures termed procapsids. Previously, we showed that a global suppressor (su) substitution, T...

Background: The advent of recombinant DNA technology has facilitated heterologous expression of proteins from various sources in different host systems including Escherichia coli. If a plant virus coat protein is expressed in the bacterium it can be used as the antigen for antibody preparation. Such a recombinant antigen preparation can be particularly useful where equipment such as ultracentri...

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