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Assessing the role of Tetrahymena thermophila vacuolar protein sorting 13A (TtVPS13A) in phagocytosis.

机译:评估嗜热四膜膜液泡蛋白分选13A(TtVPS13A)在吞噬作用中的作用。

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摘要

The molecular basis of both benign and malignant parathyroid neoplasia is still poorly understood. While a few genes have been identified whose alteration contributes to parathyroid tumor formation, many of the genetic and genomic contributors remain unknown. It remains controversial whether benign adenomas are actually capable of progressing to frank cancer or if parathyroid cancers arise de novo, without passing through an adenoma intermediate.;Through genome-wide copy number and loss of heterozygosity analyses using Affymetrix GeneChip SNP mapping arrays, this study identified regions of likely genetic importance to the pathogenesis of parathyroid tumors. Tumor suppressor genes contributing to benign parathyroid tumorigenesis are likely located on chromosomes 1, 6q, 9, 11, 13q, 15q, 18q and 22q. Chromosomes 1p, 3, 13q and 14q likely contain tumor suppressor genes important to malignant parathyroid tumorigenesis. Chromosomes 1, 11 and 13 likely contain more than one tumor suppressor gene relevant to parathyroid tumorigenesis.;Based on the pattern of clonal allelic alterations in parathyroid tumors, it is likely that the majority of malignant parathyroid carcinomas arise independently of, rather then as a progression from, benign parathyroid adenomas. It is unclear whether a subset of parathyroid adenomas could have malignant potential.;Mutational analysis of CDKN1B, encoding p27, revealed both germline and somatic mutations in seemingly sporadic parathyroid adenomas, highlighting its role as an important contributor to benign parathyroid tumorigenesis. Sequence analyses have also excluded the involvement of several important candidate genes in parathyroid tumorigenesis. No mutations of CTNNB1 exon 3 were found in 97 parathyroid adenomas and 10 parathyroid carcinomas, illustrating that involvement of beta-catenin mutation in parathyroid tumorigenesis is, at best, exceedingly rare. Mutations of HRAS, KRAS NRAS, BRAF, TP53 and PTEN were not found in parathyroid carcinomas. It is likely that mutation of these genes contribute infrequently, if at all, to the molecular pathogenesis of parathyroid carcinoma. Somatic mutations miR-15alpha-miR-16-1 were not found in parathyroid carcinomas; a gene or genes other than miR-15alpha-miR-16-1 is likely the primary target of allelic loss of chromosome 13 in parathyroid cancers.
机译:良性和恶性甲状旁腺肿瘤的分子基础仍然知之甚少。虽然已经鉴定出一些基因的改变有助于甲状旁腺肿瘤形成的基因,但是许多遗传和基因组贡献者仍然未知。良性腺瘤是否真的有能力发展为坦率的癌症或甲状旁腺癌是否不通过腺瘤中间发生而是否重新发生仍存在争议。通过使用Affymetrix GeneChip SNP定位阵列进行全基因组拷贝数分析和杂合性丧失,这项研究确定对甲状旁腺肿瘤的发病机制可能具有遗传重要性的区域。有助于良性甲状旁腺肿瘤发生的抑癌基因可能位于染色体1、6q,9、11、13q,15q,18q和22q。 1p,3、13q和14q染色体可能含有对恶性甲状旁腺肿瘤发生重要的抑癌基因。 1号,11号和13号染色体可能包含一个以上与甲状旁腺肿瘤发生有关的抑癌基因。基于甲状旁腺肿瘤的克隆等位基因改变的模式,大多数恶性甲状旁腺癌可能独立于而不是作为甲状旁腺癌而出现。良性甲状旁腺腺瘤进展。尚不清楚亚甲状旁腺腺瘤是否可能具有恶性潜能。编码p27的CDKN1B的突变分析揭示了看似零星的甲状旁腺腺瘤中的种系和体细胞突变,突出了其作为良性甲状旁腺肿瘤发生的重要作用。序列分析还排除了甲状旁腺肿瘤发生中几个重要候选基因的参与。在97例甲状旁腺腺瘤和10例甲状旁腺癌中未发现CTNNB1外显子3突变,这说明,β-catenin突变在甲状旁腺肿瘤发生中的作用是极少的。在甲状旁腺癌中未发现HRAS,KRAS NRAS,BRAF,TP53和PTEN突变。这些基因的突变很可能很少(如果根本不参与)甲状旁腺癌的分子发病机理。在甲状旁腺癌中未发现体细胞突变miR-15alpha-miR-16-1。 miR-15alpha-miR-16-1以外的一个或多个基因可能是甲状旁腺癌中13号染色体等位基因丢失的主要靶标。

著录项

  • 作者单位

    University of Connecticut.;

  • 授予单位 University of Connecticut.;
  • 学科 Biology Molecular.;Biology Genetics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:50

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