Title of article :
Stochastic Modeling of T cell receptor gene rearrangement
Author/Authors :
Sepْlveda، نويسنده , , Nuno and Boucontet، نويسنده , , Laurent and Pereira، نويسنده , , Pablo and Carneiro، نويسنده , , Jorge، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
13
From page :
153
To page :
165
Abstract :
The mechanisms controlling the recombination process of the γ genes that encode the γ chain of the antigen receptor of the γ δ T lymphocytes are unclear. Based on experimental data on the recombination status of the two major TCR γ genes expressed in V γ 4 + and V γ 1 + thymocytes, we tested the plausibility of three possible rearrangement mechanisms: (1) a time window mechanism according to which the two chromosomes are accessible to the recombination machinery during a defined period of time; (2) a feedback mechanism in which recombination stops shortly after the first in-frame rearrangement event anywhere in both chromosomes; and (3) a feedback mechanism with asynchronous chromosome accessibility, in which there is a first period when only one chromosome is accessible for recombination, followed by a second period when both chromosomes are accessible; shortly after the first in-frame rearrangement event, during any of these two periods, recombination will definitely stop. We model the time window mechanism using a pure probabilistic approach and the two feedback mechanisms using a continuous-time Markov chain formalism. We used maximum likelihood methodology to infer the goodness-of-fit of the models showing evidence for the last model, which best fits the data. Further analysis of this model suggests an evolutionary tradeoff between allelic and isotypic exclusion and the probability that a precursor differentiates into a mature γ δ T lymphocyte.
Keywords :
TCR ? gene rearrangement , Markov chains , Time window , Feedback and locus accessibility
Journal title :
Journal of Theoretical Biology
Serial Year :
2005
Journal title :
Journal of Theoretical Biology
Record number :
1536978
Link To Document :
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