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Single cell and single molecule techniques for the analysis of the epigenome.

机译:用于表观基因组分析的单细胞和单分子技术。

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摘要

Epigenetic regulation is a critical biological process for the health and development of a cell. Epigenetic regulation is facilitated by covalent modifications to the underlying DNA and chromatin proteins. A fundamental understanding of these epigenetic modifications and their associated interactions at the molecular scale is necessary to explain phenomena including cellular identity, stem cell plasticity, and neoplastic transformation. It is widely known that abnormal epigenetic profiles have been linked to many diseases, most notably cancer. While the field of epigenetics has progressed rapidly with conventional techniques, significant advances remain to be made with respect to combinatoric analysis of epigenetic marks and single cell epigenetics. Therefore, in this dissertation, I will discuss our development of devices and methodologies to address these pertinent issues.;First, we designed a preparatory polydimethylsiloxane (PDMS) microdevice for the extraction, purification, and stretching of human chromosomal DNA and chromatin from small cell populations down to a single cell. The valveless device captures cells by size exclusion within the micropillars, entraps the DNA or chromatin in the micropillars after cell lysis, purifies away the cellular debris, and fluorescently labels the DNA and/or chromatin all within a single reaction chamber. With the device, we achieve nearly 100% extraction efficiency of the DNA. The device is also used for in-channel immunostaining of chromatin followed by downstream single molecule chromatin analysis in nanochannels (SCAN).;Second, using multi-color, time-correlated single molecule measurements in nanochannels, simultaneous coincidence detection of 2 epigenetic marks is demonstrated. Coincidence detection of 3 epigenetic marks is also established using a pulsed interleaved excitation scheme. With these two promising results, genome-wide quantification of epigenetic marks was pursued. Unfortunately, quantitative SCAN never materialized. Reasons for this, including poor signal to background, are explained in detail.;Third, development of mobility-SCAN, an analytical technique for measuring and analyzing single molecules based on their fluorescent signature and their electrophoretic mobility in nanochannels is described. We use the technique to differentiate biomolecules from complex mixtures and derive parameters such as diffusion coefficients and effective charges. Finally, the device is used to detect binding interactions of various complexes similar to affinity capillary electrophoresis, but on a single molecule level.;Fourth, we conclude by briefly discussing SCAN-sort, a technique to sort individual chromatin molecules based on their fluorescent emissions for further downstream analysis such as DNA sequencing. We demonstrate a 2-fold enrichment of chromatin from sorting and discuss possible system modifications for better performance in the future.
机译:表观遗传调控是细胞健康和发育的关键生物学过程。共价修饰潜在的DNA和染色质蛋白有助于表观遗传调控。必须对这些表观遗传修饰及其在分子水平上的相关相互作用有基本的了解,才能解释包括细胞身份,干细胞可塑性和肿瘤转化在内的现象。众所周知,异常的表观遗传学特征已经与许多疾病,尤其是癌症相关。尽管表观遗传学的领域已通过常规技术迅速发展,但在表观遗传标记和单细胞表观遗传学的组合分析方面仍有重大进展。因此,在本文中,我将讨论我们为解决这些相关问题而开发的设备和方法。首先,我们设计了一种制备型聚二甲基硅氧烷(PDMS)微型设备,用于从小细胞中提取,纯化和拉伸人染色体DNA和染色质人口下降到一个单元。无阀装置通过大小排阻捕获微柱内的细胞,在细胞裂解后将DNA或染色质截留在微柱中,纯化掉细胞碎片,并在单个反应室内对DNA和/或染色质进行荧光标记。使用该设备,我们可以实现近100%的DNA提取效率。该设备还用于染色质的通道内免疫染色,然后在纳米通道中进行下游单分子染色质分析(SCAN)。其次,在纳米通道中使用多色,时间相关的单分子测量,可以同时检测两个表观遗传标记演示。还使用脉冲交错激励方案建立了3个表观遗传标记的重合检测。有了这两个有希望的结果,就进行了全基因组表观遗传标记的量化。不幸的是,定量SCAN从未实现。详细解释了造成这种情况的原因,包括对背景的不良信号。第三,描述了迁移率扫描技术的发展,它是一种基于分子的荧光特征和在纳米通道中的电泳迁移率来测量和分析单分子的分析技术。我们使用该技术将生物分子与复杂混合物区分开来,并得出扩散系数和有效电荷等参数。最后,该设备用于检测各种复合物的结合相互作用,类似于亲和毛细管电泳,但在单个分子水平上。第四,我们通过简要讨论SCAN-sort来结束,SCAN-sort是一种基于单个荧光素分子的荧光发射来对其进行分类的技术用于进一步的下游分析,例如DNA测序。我们展示了分选过程中染色质的2倍富集,并讨论了可能的系统修改,以在将来实现更好的性能。

著录项

  • 作者单位

    Cornell University.;

  • 授予单位 Cornell University.;
  • 学科 Physics.;Analytical chemistry.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 235 p.
  • 总页数 235
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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