CSHL 2022 Gene Expression and Signaling in the Immune System Conference
CSHL 2022 免疫系统中的基因表达和信号转导会议
基本信息
- 批准号:10391837
- 负责人:
- 金额:$ 1.6万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2021
- 资助国家:美国
- 起止时间:2021-12-01 至 2022-11-30
- 项目状态:已结题
- 来源:
- 关键词:AmericanAnimal ModelAnimalsAntigen ReceptorsApplications GrantsAreaAutoimmune DiseasesAutoimmunityB-LymphocytesBacteriaBiochemistryBiological ModelsCell physiologyCellsClinical DataCollaborationsCommunicable DiseasesCommunicationComplementCongressesDataDevelopmentDisciplineDiseaseDistressEnsureEnvironmentEventEvolutionFacultyFinancial SupportFosteringFundingFutureGene ExpressionGene Expression RegulationGenesGeneticGenetic TranscriptionGoalsHumanHypersensitivityImmuneImmune responseImmune systemImmunityImmunobiologyImmunologic MemoryImmunologistImmunologyIndustrializationInfectionInternationalInvestigationKnowledgeLaboratoriesLinkMalignant NeoplasmsMembraneMicrobeMicrobiologyMolecularMolecular AnalysisMolecular BiologyNational Institute of Allergy and Infectious DiseaseNatural ImmunityOralParticipantPharmacologyPhysiologyPostdoctoral FellowProcessRecording of previous eventsRegulationResearchResearch InstituteResearch PersonnelRunningScientistSeriesSignal TransductionSystems BiologyT-LymphocyteTimeTissuesTranscriptional RegulationVaccinationVirusWomanWorkcareer developmentcell typecytokinefield studygraduate studenthost-microbe interactionsimmune system functionintercellular communicationinterestmeetingsmultidisciplinarypathogenposterssenior facultystructural biologysuccesssymposiumvirology
项目摘要
Cold Spring Harbor Laboratory Conference
GENE EXPRESSION AND SIGNALING IN THE IMMUNE SYSTEM
April 19-23, 2022
ABSTRACT
The proposed meeting on Gene Expression and Signaling in the Immune System, to be held in
spring 2022, will focus on the most recent advances in this rapidly moving field. The meeting will be open,
with attendance limited only by the facilities available to a maximum of ~425 participants. Oral presentations
will be delivered by a combination of invited speakers and those selected from submitted abstracts. This
ensures the participation of junior and senior leaders in the field and the presentation of the most exciting
results emerging at the time of the meeting. A particular emphasis will be made to ensure that a substantial
number of speakers will be advanced trainees or junior PIs. The oral presentations will be complemented by
poster presentations in two sessions, also selected from submitted abstracts. The areas to be covered in the
2022 meeting include 1) Regulation of gene expression; 2) Differentiation; 3) Signaling at the membrane; 4)
Intracellular signaling; 5) Intercellular communication in 4D; 6) Host:microbe interactions; 7) Immune
Responses; and 8) Tissue-immune communications (immunophysiology). Rather than focusing on one
particular type of immune cell or disease process, the meeting will highlight mechanistic approaches that
aim to rigorously advance our knowledge of how the processes of signal transduction and gene regulation
operate within the immune system at different scales. Ample opportunity is provided for the presentation of
important, late-breaking findings. The meeting format also ensures and encourages highly productive
discussions, particularly during meals and in poster sessions. The meeting will foster interactions among
immunologists working in related areas, and provide a forum for the development of new ideas and
approaches for current and future investigations of regulation of signaling and gene expression in the
immune system.
冷泉港实验室会议
免疫系统中的基因表达和信号传导
4月19日至23日,2022年
抽象的
提议的有关免疫系统中基因表达和信号传导的会议,将持有
2022年春季,将重点关注这个快速移动的领域的最新进展。会议将开放,
出勤率仅受到最多约425名参与者的设施限制。口头演示
将由受邀演讲者和从提交摘要中选出的组合提供。这
确保初中和高级领导者参与该领域以及最令人兴奋的表现
会议时结果出现。将特别强调以确保实质性
演讲者的数量将是高级学员或初级PI。口头演讲将得到补充
海报演示在两次会议上,也从提交的摘要中选择。要覆盖的区域
2022会议包括1)调节基因表达; 2)分化; 3)在膜上发出信号; 4)
细胞内信号传导; 5)4D中的细胞间通信; 6)主机:微生物相互作用; 7)免疫
回应; 8)组织免疫通信(免疫生理学)。而不是专注于一个
特定类型的免疫细胞或疾病过程,会议将强调机械方法
旨在严格提高我们对信号转导和基因调控过程的了解
在不同尺度的免疫系统内运行。提供了足够的机会来展示
重要的,后期的发现。会议格式还确保并鼓励高效
讨论,尤其是在饭菜和海报会议中。会议将促进互动
免疫学家在相关领域工作,并为发展新思想和
目前和未来研究信号传导和基因表达调节的方法
免疫系统。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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DAVID J. STEWART其他文献
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