Attracting AID to targets of somatic hypermutation. 2010

Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
Committee on Immunology, University of Chicago, Chicago, IL 60637, USA.

The process of somatic hypermutation (SHM) of immunoglobulin (Ig) genes requires activation-induced cytidine deaminase (AID). Although mistargeting of AID is detrimental to genome integrity, the mechanism and the cis-elements responsible for targeting of AID are largely unknown. We show that three CAGGTG cis-elements in the context of Ig enhancers are sufficient to target SHM to a nearby transcribed gene. The CAGGTG motif binds E47 in nuclear extracts of the mutating cells. Replacing CAGGTG with AAGGTG in the construct without any other E47 binding site eliminates SHM. The CA versus AA effect requires AID. CAGGTG does not enhance transcription, chromatin acetylation, or overall target gene activity. The other cis-elements of Ig enhancers alone cannot attract the SHM machinery. Collectively with other recent findings, we postulate that AID targets all genes expressed in mutating B cells that are associated with CAGGTG motifs in the appropriate context. Ig genes are the most highly mutated genes, presumably because of multiple CAGGTG motifs within the Ig genes, high transcription activity, and the presence of other cooperating elements in Ig enhancers.

UI MeSH Term Description Entries
D009154 Mutation Any detectable and heritable change in the genetic material that causes a change in the GENOTYPE and which is transmitted to daughter cells and to succeeding generations. Mutations
D002460 Cell Line Established cell cultures that have the potential to propagate indefinitely. Cell Lines,Line, Cell,Lines, Cell
D002645 Chickens Common name for the species Gallus gallus, the domestic fowl, in the family Phasianidae, order GALLIFORMES. It is descended from the red jungle fowl of SOUTHEAST ASIA. Gallus gallus,Gallus domesticus,Gallus gallus domesticus,Chicken
D003564 Cytidine Deaminase An enzyme that catalyzes the deamination of cytidine, forming uridine. EC 3.5.4.5. Cytidine Aminohydrolase,Aminohydrolase, Cytidine,Deaminase, Cytidine
D004742 Enhancer Elements, Genetic Cis-acting DNA sequences which can increase transcription of genes. Enhancers can usually function in either orientation and at various distances from a promoter. Enhancer Elements,Enhancer Sequences,Element, Enhancer,Element, Genetic Enhancer,Elements, Enhancer,Elements, Genetic Enhancer,Enhancer Element,Enhancer Element, Genetic,Enhancer Sequence,Genetic Enhancer Element,Genetic Enhancer Elements,Sequence, Enhancer,Sequences, Enhancer
D004789 Enzyme Activation Conversion of an inactive form of an enzyme to one possessing metabolic activity. It includes 1, activation by ions (activators); 2, activation by cofactors (coenzymes); and 3, conversion of an enzyme precursor (proenzyme or zymogen) to an active enzyme. Activation, Enzyme,Activations, Enzyme,Enzyme Activations
D005803 Genes, Immunoglobulin Genes encoding the different subunits of the IMMUNOGLOBULINS, for example the IMMUNOGLOBULIN LIGHT CHAIN GENES and the IMMUNOGLOBULIN HEAVY CHAIN GENES. The heavy and light immunoglobulin genes are present as gene segments in the germline cells. The completed genes are created when the segments are shuffled and assembled (B-LYMPHOCYTE GENE REARRANGEMENT) during B-LYMPHOCYTE maturation. The gene segments of the human light and heavy chain germline genes are symbolized V (variable), J (joining) and C (constant). The heavy chain germline genes have an additional segment D (diversity). Genes, Ig,Immunoglobulin Genes,Gene, Ig,Gene, Immunoglobulin,Ig Gene,Ig Genes,Immunoglobulin Gene
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001402 B-Lymphocytes Lymphoid cells concerned with humoral immunity. They are short-lived cells resembling bursa-derived lymphocytes of birds in their production of immunoglobulin upon appropriate stimulation. B-Cells, Lymphocyte,B-Lymphocyte,Bursa-Dependent Lymphocytes,B Cells, Lymphocyte,B Lymphocyte,B Lymphocytes,B-Cell, Lymphocyte,Bursa Dependent Lymphocytes,Bursa-Dependent Lymphocyte,Lymphocyte B-Cell,Lymphocyte B-Cells,Lymphocyte, Bursa-Dependent,Lymphocytes, Bursa-Dependent
D001483 Base Sequence The sequence of PURINES and PYRIMIDINES in nucleic acids and polynucleotides. It is also called nucleotide sequence. DNA Sequence,Nucleotide Sequence,RNA Sequence,DNA Sequences,Base Sequences,Nucleotide Sequences,RNA Sequences,Sequence, Base,Sequence, DNA,Sequence, Nucleotide,Sequence, RNA,Sequences, Base,Sequences, DNA,Sequences, Nucleotide,Sequences, RNA

Related Publications

Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
January 2007, Advances in experimental medicine and biology,
Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
January 2010, Advances in immunology,
Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
August 2004, Nature,
Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
May 2020, Viral immunology,
Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
January 2009, Advances in immunology,
Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
April 2024, Trends in biochemical sciences,
Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
January 1998, The International journal of developmental biology,
Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
November 2012, Oncotarget,
Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
April 2006, Current opinion in immunology,
Atsushi Tanaka, and Hong Ming Shen, and Sarayu Ratnam, and Prashant Kodgire, and Ursula Storb
April 2009, Trends in immunology,
Copied contents to your clipboard!