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Supporting Information File SF5
Supporting Information File SF5

... guanidine thiocyanate and phenol in mono-phase solution, the thymus tissues were homogenized in TRI REAGENT (1 ml per 50-100 mg of tissue) in a Polytron homogenizer and light vertex and incubation (10 min, room temp). 0.2 ml of chloroform was added per ml of TRI REAGENT and incubation (10 min, room ...
18.1 Macromolecules
18.1 Macromolecules

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Structure-function study of the C-terminal tail of Thioredoxin Reductase

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Leukaemia Section t(10;11)(q25;p15) Atlas of Genetics and Cytogenetics in Oncology and Haematology
Leukaemia Section t(10;11)(q25;p15) Atlas of Genetics and Cytogenetics in Oncology and Haematology

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Expression of yolk protein genes in liver Beekman, Johanna

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Preparation and transformation of competent bacteria: Calcium

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answers

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The Chemical Building Blocks of Life

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... • The Golgi will release these proteins in vesicles: sort of like a sac, which will protect the protein(s). An example are lysosomes, which are produced by Rough ER /Golgi activity. These sacs (lysosomes), are often considered a type of cell organelle, and they contain enzymes, which digest and brea ...
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Additional Media for Instruction with DNA, Protein, and tRNA models

... DNAi is a website from Cold Spring Harbor. http://www.dnai.org/a/index.html To access some super animations with narration, select the following buttons on the page: 1) “Copying the Code” + (“Putting it together” fro ...
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Additional file 6
Additional file 6

... All the identified proteins of the non-redundant, high-confidence dataset of glomerulus proteome consisting of 1,817 unique proteins representing 1,478 unique genes were analyzed based onGene Ontology (GO) Cellular Component (Panel A) and GO Molecular Function (Panel B) vocabularies using PANTHER ve ...
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Protein moonlighting



Protein moonlighting (or gene sharing) is a phenomenon by which a protein can perform more than one function. Ancestral moonlighting proteins originally possessed a single function but through evolution, acquired additional functions. Many proteins that moonlight are enzymes; others are receptors, ion channels or chaperones. The most common primary function of moonlighting proteins is enzymatic catalysis, but these enzymes have acquired secondary non-enzymatic roles. Some examples of functions of moonlighting proteins secondary to catalysis include signal transduction, transcriptional regulation, apoptosis, motility, and structural.Protein moonlighting may occur widely in nature. Protein moonlighting through gene sharing differs from the use of a single gene to generate different proteins by alternative RNA splicing, DNA rearrangement, or post-translational processing. It is also different from multifunctionality of the protein, in which the protein has multiple domains, each serving a different function. Protein moonlighting by gene sharing means that a gene may acquire and maintain a second function without gene duplication and without loss of the primary function. Such genes are under two or more entirely different selective constraints.Various techniques have been used to reveal moonlighting functions in proteins. The detection of a protein in unexpected locations within cells, cell types, or tissues may suggest that a protein has a moonlighting function. Furthermore, sequence or structure homology of a protein may be used to infer both primary function as well as secondary moonlighting functions of a protein.The most well-studied examples of gene sharing are crystallins. These proteins, when expressed at low levels in many tissues function as enzymes, but when expressed at high levels in eye tissue, become densely packed and thus form lenses. While the recognition of gene sharing is relatively recent—the term was coined in 1988, after crystallins in chickens and ducks were found to be identical to separately identified enzymes—recent studies have found many examples throughout the living world. Joram Piatigorsky has suggested that many or all proteins exhibit gene sharing to some extent, and that gene sharing is a key aspect of molecular evolution. The genes encoding crystallins must maintain sequences for catalytic function and transparency maintenance function.Inappropriate moonlighting is a contributing factor in some genetic diseases, and moonlighting provides a possible mechanism by which bacteria may become resistant to antibiotics.
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