Elucidating the Chemistry and Biology of Nucleic Acid Cytidine Deaminases in HIV
Elucidating the Chemistry and Biology of Nucleic Acid Cytidine Deaminases in HIV
批准号:
8416993
负责人:
Rahul Manu Kohli
金额:
$13.2万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-02-15 至 2015-01-31
关键词:
Acquired Immunodeficiency SyndromeAddressAntibodiesAntibody AffinityAntibody DiversityB-Cell LymphomasB-LymphocytesBindingBiochemicalBiologicalBiological ProcessBiologyCatalysisChemicalsChemistryChromosomal translocationChronicCommunicable DiseasesComplexCoupledCytidine DeaminaseCytosineDNADNA BindingDNA biosynthesisDeaminaseDeaminationDoctor of PhilosophyEnzyme ActivationEnzymesEpitopesEvolutionFamilyFamily memberGeneration of Antibody DiversityGenerationsGenesGenomeGoalsHIVHIV GenomeImmune responseImmune systemImmunoglobulin Class SwitchingImmunoglobulin GenesImmunoglobulin Somatic HypermutationImmunoglobulin Switch RecombinationImmunologicsImmunologyIn VitroInfectionKineticsLeadLesionLinkMalignant NeoplasmsMediatingMentorsMethodologyMethodsMolecularMutationNatureNon-Hodgkin&aposs LymphomaNucleic Acid BindingNucleic AcidsOligonucleotidesOncogenicOutcomePatientsPhysiciansPhysiologicalPlayPolynucleotidesProteinsRegulationResearchResearch PersonnelRoleSite-Directed MutagenesisSpecificityStructureTestingTrainingUracilVariantVertebral columnViralWorkactivation-induced cytidine deaminaseanalogbasecatalystenzyme mechanismexperiencehuman CEM15 proteinimmune activationin vivoinhibitor/antagonistinsightinterestmembermutantneoplasticnovelnucleobasenucleoside analognucleotide analogoverexpressionpathogenpreferenceresearch studyresponseskillsvif Gene Productsvirology
中文摘要
点击翻译按钮获取中文摘要
英文摘要
The primary investigator is an MD/PhD trained infectious diseases physician with an interest in
understanding enzymes that generate diversity in host-pathogen interactions. In the proposed work, the PI
aims to bring his prior experience in enzyme mechanisms and develop new training through virologic
experiments and immunologic studies.
A remarkable group of enzymes, the polynucleotide cytidine deaminases of the AID/APOBEC family,
play both constructive and destructive roles in struggle against HIV. On one hand, deamination by the family
member APOBEC3G interferes with the integrity of the pathogen genome. In turn, HIV has evolved the
lentiviral protein Vif as an evasive means to counteract human APOBEC3G. Infection with HIV is also
associated with immune activation, which can result in increased expression of a B-cell specific deaminase
family member, AID. AID physiologically serves as the chief catalyst governing antibody diversity through the
introduction of targeted uracil lesions in antibody variable genes or switch regions which ultimately result in
higher affinity antibodies of altered isotype. Aberrant regulation and expression of AID has increasingly been
associated with Non-Hodgkins lymphoma, the leading AIDS-defining malignancy in HIV infected patients.
Despite the importance of these cytidine deaminases, little is know about the nature of their interaction with
their nucleic acid targets. This proposal addresses the hypothesis that the molecular interactions that lead to
catalysis and binding of nucleic acids are critical determinants of their proper physiologic function. The studies
aim to decipher and perturb these molecular interactions. Initially, structure-based hypotheses will be used to
localize the protein determinants of sequence preference and resolve the mode of binding to the nucleic acid
backbone. By utilizing novel loop graft mutant enzymes with altered sequence preference, the impact of
perturbed sequence specificity on retroviral restriction (APOBEC3G) or antibody diversity and chromosomal
translocations (AID) will be explored. To understand catalysis by AID/APOBEC enzymes, nucleoside analogs
will be introduced into oligonucleotides via chemical or chemoenzymatic methods and are used to characterize
the kinetics of deamination and the inhibition of pro-oncogenic AID activity. Taken together, a full
characterization of the AID/APOBEC-nucleic acid complex ¿ binding and catalysis ¿ will provide a molecular
basis for the action of this important enzyme family in vitro and in vivo. Through mentored training, the PI will
develop the broad based research skills necessary to examine biological and biochemical aspects of diversity
generation in host-pathogen interactions upon an ultimate transition to independence.
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Elucidating the Chemistry and Biology of Nucleic Acid Cytidine Deaminases in HIV
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资助金额:$13.2万
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财政年份:2010
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依托单位:
Elucidating the Chemistry and Biology of Nucleic Acid Cytidine Deaminases in HIV
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批准号:8025994
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-
资助金额:$13.2万
-
财政年份:2010
-
负责人:Rahul Manu Kohli
-
依托单位:
海外基金