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REGULATION OF SEQUENTIAL GENE EXPRESSION IN BACILLUS

REGULATION OF SEQUENTIAL GENE EXPRESSION IN BACILLUS
芽孢杆菌中序列基因表达的调控
批准号:
3287762
负责人:
WILLIAM GEORGE HALDENWANG
金额:
$5.3万
依托单位国家:
美国
项目类别:
财政年份:
1985
资助国家:
美国
项目状态:
已结题
起止时间:
1985-08-30 至 1988-07-31

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中文摘要
翻译
分化细胞使用什么机制来激活特定的 确保从一个细胞有序进行的正确序列的基因 是否要输入到另一个?将通过以下方式寻求这个问题的可能答案 研究在疾病晚期激活基因的控制机制 枯草芽孢杆菌的内孢子形成。在产孢期 这种有机体在形态上经历了一系列的变化, 生理学,至少在早期阶段,可以由 细胞的RNA聚合酶的修饰。监管因素 激活在孢子形成后期转录的基因以及 允许这些因素在这个特定时刻起作用的计时机制 发展阶段尚不清楚。 我们将调查进一步的RNA聚合酶修饰是否会发挥作用 通过多次分离该酶在晚期基因转录中的作用 在内孢子形成的后半部分检查其亚基 组成和体外转录的特异性。此外,RNA的 在这些时间段唯一合成的数据将被检测到。脱氧核糖核酸 与这些RNA互补的序列将被克隆并用作 用于体外转录的模板。转录酶将是 部分纯化的RNA聚合酶可能是在“后期”期间分离的 产孢子“或者,如果这些酶不能转录克隆的序列, 然后从进化到这个阶段的细胞中提取粗蛋白 后期。造成“转录延迟”的因素可能是 利用其体外转录活性鉴定和纯化它们 以化验为指导。 然后对假定的监管因素进行分析,以确定如何 它们只能在特定阶段执行其功能 发展规划。将制备针对这些病毒的单抗 预期新的RNA聚合酶亚基和/或其他晚期转录 用作免疫学探针的因子,以确定这些因子何时 存在于细胞中,以及影响其合成的条件。这个 抗体也将用于开发以抗体为基础的快速 这些蛋白质的纯化系统。多克隆抗体和 将制备寡核苷酸探针并用于克隆结构 编码晚期转录因子的基因。一旦克隆,这些 然后,可以通过基因融合和体外转录来分析基因 技巧。
英文摘要
What mechanisms do differentiating cells use to activate particular sets of genes in the proper sequence to ensure an orderly progression from one cell type to another? Possible answers to this question will be sought by examining the control machanisms that activate genes at late stages of endospore formation in the bacterium Bacillus subtilis. During sporulation this organism undergoes a sequential alteration in morphology and physiology that may be regulated, at least during the early stages, by modification of the cell's RNA polymerase. The regulatory factors that activate genes transcribed at late stages of spore formation as well as the timing mechanism that permits these factors to function at this particular stage of development are unknown. We will investigate whether further RNA polymerase modifications could play a role in late gene transcription by isolating this enzyme at several times during the final half of endospore formation to examine its subunit composition and in vitro transcriptional specificity. In addition, RNA's that are uniquely synthesized during these periods will be detected. DNA sequences that are complementary to these RNA's will be cloned and used as templates for in vitro transcription. The transcribing enzymes will be either partially purified RNA polymerases that were isolated during "late sporulation" or, if these enzymes fail to transcribe the cloned sequences, then crude protein extracts prepared from cells that had progressed to this late stage. The factors responsible for "late transcription" would be identified and purified using their activity in the in vitro transcription assay as a guide. The putative regulatory factors would then be analyzed to determine how they are able to perform their function only at a particular stage in the developmental program. Monoclonal antibodies will be prepared against anticipated novel RNA polymerase subunits and/or other late transcription factors for use as immunological probes to determine when these factors are present in cells as well as conditions that influence their synthesis. The antibodies would also be used in the development of an antibody-based rapid purification system for these proteins. Polyclonal antibody and oligonucleotide probes will be prepared and used to clone the structural genes that code for the late transcription factors. Once cloned, these genes could then be analyzed by gene fusion and in vitro transcription techniques.
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