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端粒&端粒酶PCR芯片 Telomeres & Telome

rase PCR Array
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  • Telomeres & Telomerase PCR Array端粒&端粒酶PCR芯片
  • 2026年01月27日
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      端粒&端粒酶PCR芯片

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    Telomeres & Telomerase PCR Array

    端粒&端粒酶PCR芯片

    Product Species Technology Cat. No.
    Telomeres & Telomerase PCR Array Human Gene Expression PAHS-010Z
    Telomeres & Telomerase PCR Array Mouse Gene Expression PAMM-010Z
    Telomeres & Telomerase PCR Array Rat Gene Expression PARN-010Z
    Telomeres & Telomerase RT² Profiler™ PCR Array profiles the expression of 84 key genes central to telomere replication and maintenance. Telomeres, repetitive DNA regions of hexanucleotide repeats, protect chromosomal ends from deterioration during DNA replication. Telomerase (TERT), a reverse transcriptase, forms a complex with an RNA template and cofactors to extend telomeres. The shelterin protein complex then binds the 3' single-stranded end of telomeric DNA, protecting it from DNA damage responses. Inhibition of this process leads to short telomeres and premature aging-related diseases, whereas uncontrolled telomere lengthening promotes carcinogenesis. Research into telomeres often utilizes simpler model organisms, such as yeast, meaning that many mechanistic details have yet to be discovered or confirmed in mammalian systems by you. This array contains genes involved in telomere maintenance as well as genes comprising the telomerase and shelterin complexes and their regulators. This array also includes genes recently described in telomere regulation, such as the SLX4 complex, as well as other genes associated with telomeres but with poorly understood functions. Using real-time PCR, you can easily and reliably analyze the expression of a focused panel of genes involved in telomere maintenance and genome integrity with this array.

    端粒&端粒酶PCR芯片可用于研究端粒复制和维持的84个核心基因的表达。端粒,染色体末端的六碱基重复DNA片段,在DNA复制过程中保护染色体末端免于融合和退化。端粒酶,一个反转录酶,与RNA模板和辅助因子形成复合体进行端粒延伸,该蛋白复合体与端粒DNA的
    3’单链末端结合后将保护其免受DNA损伤应激作用。端粒修复活性的抑制会导致端粒的缩短,以至老化相关的疾病提前到来,反之,端粒延伸活性的失控则会促进癌症的发生。端粒的研究一般是利用简单的模式生物如酵母来进行的,意味着在哺乳动物中的具体机制细节需要得到进一步的发掘和验证。该芯片涵盖了端粒维持相关的基因以及端粒酶、端粒酶复合物和对应的调节因子基因,同时也包含了近期研究发现参与端粒调节的基因(如SLX4复合体),以及与端粒相关但功能尚不明确的基因。通过实时定量PCR,研究者可以简单可靠地同时分析端粒维持和基因组完整性的相关基因的表达。
    Telomere Maintenance:ACD, BLM, DCLRE1C, DKC1, ERCC1, ERCC4, HSPA1L, MRE11A, MYC, NBN (NBS1), PARP1 (ADPRT1), PIF1, POT1, PRKDC, PTGES3, RAD50, RFC1, RTEL1, SMG6, TEP1, TERF1, TERF2, TERF2IP, TERT, TINF2, TNKS (TIN1), TNKS2, XRCC5, XRCC6 (G22P1).
    Telomere-Associated Complexes:
    Shelterin:ACD, POT1, RAP1A, TERF1, TERF2, TINF2.
    Telomerase:DKC1, GAR1, NHP2, NOP10, TERT, WRAP53.
    SLX4:SLX4, ERCC1, ERCC4, EME1, MSH2, MSH3, MUS81, PLK1, TERF2, TERF2IP.
    Telomere Regulation:
    Regulation of Telomere Length:RTEL1, TEP1, TERF1, TERF2IP, TNKS (TIN1).
    Shelterin Complex Regulation:DCLRE1B, KRIT1, RASSF1, RAPGEF1, TPP1.
    Telomerase Regulation:ABL1, AKT1, ATP5C1, BCL2, EGF, IGF1, KRAS, MEN1, MYC, PAX8, PINX1, PPARG, PPP2R1A, PPP2R1B, PRKCA, PRKCB, RB1, SART1, SMAD3, SP1, SSB, TGFB1, TP53.
    Other Genes Associated with Telomeres:ATM, CDK2, CHEK1, CHEK2 (RAD53), HAT1, HNRNPA2B1, HNRNPD, HSP90AA1, NCL, OBFC1, PURA, RAD17, RIF1, SIRT2, SIRT6, TP53BP1, SUN1

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    • Detection of Telomerase Activity by PCR-Based Assay

      Telomeres are distal ends of human chromosomes composed of tandem repeats of the sequence TTAGGG. Possible functions of telomeres include prevention of chromosome degradation, end-to-end fusions, rearrangements, and chromosome loss. Human

    • PCR基因芯片上荧光PCR反应的研究

      基因片段的大小,PCR基因芯片的关键问题是如何检测出来在微反应池内获得的极其微量PCR产物。本文应用一些临床病例的实例标本,观察能否在基因芯片上进行不同的荧光PCR反应,如何根据基因芯片上荧光的变化判断基因的变异。1、病例、材料与方法1.1 基因组DNA标本健康成年人外周血DNA,正常脐血DNA,X连锁遗传性铁粒幼细胞贫血(XLSA)家系成员6人外周血DNA均获自北京大学第一医院,均签署知情同意书。XLSA家系中患者为兄弟两个,年龄分别为8、7岁,都在婴儿时即发现贫血。家中有一个健康的姐姐,在两

    • Detection of Telomerase hTERT Gene Expression and Its Splice Variants by RT-PCR

      The finite growth potential of normal cells is termed “cellular senescence” and its regulation appears to involve specialized DNA structures known as telomeres that exist at the ends of all eukaryotic chromosomes (1 ). Human telomeres

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