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2005年05月25日

【期刊论文】真核生物中的微RNA及其功能研究进展

张学, 马中良, 杨怀义, 田波①

遗传学报,2003,30(7):693~696,-0001,():

-1年11月30日

摘要

真核生物中存在两种主要的非编码RNA(non-coding RNA),在真核生物中发挥重要作用。一类为微小RNA(microRNA,miRNA),另一为小干扰RNA(siRNA)。miRNA大小为119~25nt,在体内与蛋白质形成核糖核蛋白复合体(miRNA),在真核基因的表达调控,生长发育中起重要作用。siRNA在RNA干扰(RNA interference,RNAi)途径中起定位特异mRNA的作用。miRNA与siRNA有联系也有区别。miRNA在真核生物中的调控机制具有保守性。

真核生物, 微小C., U, 结合微小C., U 的核糖核蛋白复合体, C., U 干扰, 小干扰C., U

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2005年05月25日

【期刊论文】Laser Capture Microdissection-Generated Target Sample for High-Density Oligonucleotide Array Hybridization

张学

BioTechniques 29: 530-536 (September 2000),-0001,():

-1年11月30日

摘要

Current advances in biomolecular technology allow precise genetic fingerprinting of specific cells responsible for the pathogenesis of human diseases. This study demonstrates the feasibility of enerating target samples from laser capture microdissection (LCM) tissues suitable for hybridization of high-density oligonucleotide arrays for gene expression profiling. RNA was successfully isolated by LCM from three paired specimens of oral cancer and linearly amplified using T7 RNA polymerase. Evaluation of the cDNA revealed that five of five cellular maintenance transcripts are detected. Biotinylated cRNA was generated and hybridized to the human Test 1 GeneChip "probe arrays, which demonstrated that the RNA is of sufficient quality and integrity to warrant further analysis. Subsequent hybridization of the samples to the HuGenFL GeneChip probe arrays revealed that 26.5%-33.0% of the approximately 7000 represented genes are expressed in each of the six samples. These results demonstrate that LCM-generated tissues can generate sufficient quality cRNA for high-density oligonucleotide microarray analysis, an important step in determining comprehensive gene expression profiling using this high-throughput technology.hybridization of LCM-generated RNA to cDNA-based expression microarrays, no report has yet shown the successful hybridization to high-density oligonucleotide mircoarrays. The limited quantity and quality of RNA isolated using LCM continues to be a technical obstacle for in vivo analysis of gene expression using microarrays. While RNA isolated from LCM-harvested tissue can be converted into cDNA libraries, it is generally agreed that the most accurate representation of gene expression for DNA chips is achieved by making the target sample directly from the RNA or by a T7-based linear RNA amplification (2,4,5). Comprehensive gene expression analysis of LCM-isolated pure cell populations will represent a major biomedical advance in our understanding of the pathogenesis of human disease (7). A major challenge in this line of investigation is the ability to generate a sufficient amount and quality of the desireddesired macromolecule from biopsied material. The GeneChip"probe arrays (Affymetrix, Santa Clara, CA, USA) allow the generation of accurate and reproducible mRNA transcript-level data (3,6,9). The HuGeneFL probe array contains probes representing approximately 7000 full-length human genes. The ability to generate target samples from LCM-based cells and tissues for hybridization to DNA chips represents an important advance that demonstrates the feasibility of using this method of sample collection for gene expression analysis on DNA chips.

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2005年05月25日

【期刊论文】Interaction of the CDK2-associated protein-1, p12DOC-1=CDK2AP1, with its homolog, p14DOC-1R

张学, Waranun Buajeeb, a, c Xue Zhang, b, c Hiroe Ohyama, c David Han, c Rudee Surarit, * Yong Kim, c and David T.W. Wong c,

Biochemical and Biophysical Research Communications 315(2004)998-1003,-0001,():

-1年11月30日

摘要

Human DOC-1/CDK2AP1 gene encodes a growth suppressor protein of 12kDa (p12DOC-1=CDK2AP1). Recently, p12DOC-1=CDK2AP1 has been shown to associate with cell cycle proteins including CDK2 and DNA olymerase a/primase. It negatively regulates CDK2 activities and suppressesDNAreplication. Therefore, identification of other p12DOC-1=CDK2AP1 interacting proteins might clarify its role in the cell cycle regulation and carcinogenesis. The purpose of this study was to identify additional p12DOC-1=CDK2AP1 interacting proteins using the yeast two-hybrid system. Using human p12DOC-1=CDK2AP1 as a bait in a liver cDNA library screening, cDNA clones identical to human DOC-1R transcript were identified. The interaction between p12DOC-1=CDK2AP1 and p14DOC-1R was verified in vitro and in cells. GST pull-down assay and immunoprecipitation experiments confirmed the interaction between the two proteins. The ritical region for p12DOC-1=CDK2AP1's interaction with p14DOC-1R was defined to amino acids 20-25 by using a series of deletion mutants as baits in the yeast two-hybrid system. Our data indicated that p12DOC-1=CDK2AP1 could associate with its homologous protein, p14DOC-1R.

p12DOC-1=, CDK2AP1, p14DOC-1R, Yeast two-hybrid system, Cell cycle proteins

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2005年05月25日

【期刊论文】Identi

张学, Hensin Tsao, , Xue Zhang, Eric Benoit and Frank G Haluska

Oncogene (1998) 16, 3397-3402,-0001,():

-1年11月30日

摘要

A novel tumor suppressor gene, PTEN/MMAC1, has been recently shown to be mutated in gliomas, breast, prostate, kidney cancers and melanomas. Loss-of-heterozygosity studies in melanoma have suggested the presence of at least one chromosome 10q locus lost early in tumor progression. In this study, we screened 45 melanoma cell lines and 17 paired uncultured metastatic melanoma and peripheral blood specimens for PTEN/MMAC1 alterations using PCR-SSCP and direct sequencing. We found nine melanoma cell lines with homozygous deletions (

cancer, genetics, mutation, PTEN/, MMAC1, melanoma

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2005年05月25日

【期刊论文】Identification and Mutation Analysis of DOC-1R, a DOC-1 Growth Suppressor-Related Gene

张学, Xue Zhang, *, † Hensin Tsao, ‡ Takanori Tsuji, § Shinsei inoshima, ¶ Jim McBride, § Paul Majewski, * Randy Todd, § obuyoshi Shimizu, ¶ David T. W. Wong, § David E. Housman, \ and Frank G. Haluska*,

Biochemical and Biophysical Research Communications 255, 59-63 (1999),-0001,():

-1年11月30日

摘要

The tumor suppressor gene MEN1 and several oncogenes including CCND1/cyclin D1/PRAD1 map to chromosome 11q13. However, molecular and cytogenetic analysis suggests the presence of a second tumor suppressor locus at this chromosome region. We have identified a novel gene from chromosome 11q13, which encodes a protein of 126 amino acids sharing an overall 57% identity with the p12DOC-1 protein encoded by the DOC-1 gene, the human homolog of hamster putative tumor suppressor doc-1 (deleted in oral cancer-1). We therefore designated the novel gene as DOC-1R for DOC-1-related. The cytogenetic location was con-firmed by chromosome fluorescent in situ hybridization. Northern blot analysis indicated that it was expressed in all the tissues examined. DOC-1R protein showed heterogeneous subcellular localization. RTPCR-SSCP analysis failed to detect deleterious mutations of the DOC-1R transcript in four premalignant oral keratinocyte lines and 20 different cancer cell lines from tumor types which frequently harbor LOH at chromosome 11q13.

tumor suppressor gene, mutation, DOC-1, DOC-1R.,

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    中国协和医科大学,北京

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