Structure of the carboxy-terminal domain of the
Bacteriophage T5, a Siphovirus belonging to the order Caudovirales, has a flexible, three-fold symmetric tail, to which three L-shaped fibres are attached. These
Structure of the receptor-binding carboxy-terminal domain of
The six bacteriophage T7 tail fibers, homo-trimers of gene product 17, are thought to be responsible for the first specific, albeit reversible, attachment to Escherichia coli lipopolysaccharide.
National Center for Biotechnology Information
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Nearly complete structure of bacteriophage DT57C reveals
Here, we present the structure of DT57C determined by cryo-EM, and an atomic model of the virus, which was further explored using all-atom molecular dynamics simulations.
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PubMed Central (PMC) is a free digital archive of biomedical and life sciences journal literature.
Fiber tail fiber characteristics
The bundled pigtail has only one end with a connector, and the other end is a broken end of an optical fiber, which is connected to other optical fiber
Structure of the carboxy-terminal domain of the bacteriophage T5
Bacteriophage T5, a Siphovirus belonging to the order Caudovirales, has a flexible, three-fold symmetric tail, to which three L-shaped fibres are attached. These fibres recognize...
RBPseg: Toward a complete phage tail fiber structure atlas
Here, we introduce RBPseg, a method that combines monomeric ESMFold predictions with a structural-based domain identification approach, to divide tail fiber sequences into manageable
Phage tail fibre assembly proteins employ a modular structure to drive
Phage tail fibres are elongated protein assemblies capable of specific recognition of bacterial surfaces during the first step of viral infection1–4.
What Are Brain Fibers and What Is Their Function?
Commissural fibers act as bridges between the left and right cerebral hemispheres. The most prominent example is the corpus callosum, a large bundle of fibers that facilitates
Structural Insights into the Chaperone-Assisted Assembly of a
In this study, we report the cryo-EM structure of the simplified tail fiber complexed with its chaperone from the myocyanophage Pam3, which provides insights into the assembly mechanism of the tail
Nearly complete structure of bacteriophage DT57C reveals
The authors present the nearly-complete structure of the DT57C bacteriophage of the Siphovirus family, revealing the molecular architecture of its capsid, neck, tail and tail tip, and
RBPseg: Toward a complete phage tail fiber structure atlas
RBPseg enables accurate modeling of tail fiber structure, providing the first comprehensive tail fiber structure atlas.
Actin Bundles Dynamics and Architecture
Cells use the actin cytoskeleton for many of their functions, including their division, adhesion, mechanosensing, endo- and phagocytosis, migration, and invasion.
Open Educational Resources – OERU, Oregon State University
Open Educational Resources – OERU, Oregon State University
Structure of the siphophage neck–Tail complex
Siphophages have a long, flexible, and noncontractile tail that connects to the capsid through a neck. The phage tail is essential for host cell
Structural Insights into the Chaperone-Assisted
In this study, we report the cryo-EM structure of the simplified tail fiber complexed with its chaperone from the myocyanophage Pam3, which provides insights into
Framework for Shape Analysis of White Matter Fiber
Diffusion imaging coupled with tractography algorithms allows researchers to image human white matter fiber bundles in-vivo. These bundles are three-dimensional
Structure of the siphophage neck–Tail complex suggests that
Siphophages have a long, flexible, and noncontractile tail that connects to the capsid through a neck. The phage tail is essential for host cell recognition and virus–host cell interactions;
Crystal Structure of the Carboxy-Terminal Region of the
The proximal half-fiber is formed by a parallel homo-trimer of gp34. The carboxy-terminal end of gp34 interacts with the distal half-fiber; the hinge angle between the proximal and distal half
Branched Lateral Tail Fiber Organization in T5-Like Bacteriophages
The T5-like siphoviruses DT57C and DT571/2, isolated from horse feces, are very closely related to each other, and most of their structural proteins are also nearly identical to T5 phage. Their
A Closer Look at a T4
An individual T4 phage consists of six major parts; head, collar, sheath, tube, endplate, and tail fibers. "Head" and "tail" refer to the two most conspicuous parts of the individual phage particle, which is
Structure of the carboxy-terminal domain of the
Download scientific diagram | Structure of the carboxy-terminal domain of the bacteriophage T5 L-shaped tail fibre. (A) Overall side stereo-view of pb1 (970
pmc.ncbi.nlm.nih.gov
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