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171.
172.
An Yan Jie Xiong Jiadong Zhu Xiangyu Li Shuting Xu Xiaoyu Feng Xin Ke Zhenyi Wang Yang Chen Hong-Wei Wang Michael Q Zhang Kehkooi Kee 《Nucleic acids research》2022,50(19):11255
Understanding the molecular and cellular mechanisms of human primordial germ cells (hPGCs) is essential in studying infertility and germ cell tumorigenesis. Many RNA-binding proteins (RBPs) and non-coding RNAs are specifically expressed and functional during hPGC developments. However, the roles and regulatory mechanisms of these RBPs and non-coding RNAs, such as microRNAs (miRNAs), in hPGCs remain elusive. In this study, we reported a new regulatory function of DAZL, a germ cell-specific RBP, in miRNA biogenesis and cell proliferation. First, DAZL co-localized with miRNA let-7a in human PGCs and up-regulated the levels of >100 mature miRNAs, including eight out of nine let-7 family, miR21, miR22, miR125, miR10 and miR199. Purified DAZL directly bound to the loops of precursor miRNAs with sequence specificity of GUU. The binding of DAZL to the precursor miRNA increased the maturation of miRNA by enhancing the cleavage activity of DICER. Furthermore, cell proliferation assay and cell cycle analysis confirmed that DAZL inhibited the proliferation of in vitro PGCs by promoting the maturation of these miRNAs. Evidently, the mature miRNAs up-regulated by DAZL silenced cell proliferation regulators including TRIM71. Moreover, DAZL inhibited germline tumor cell proliferation and teratoma formation. These results demonstrate that DAZL regulates hPGC proliferation by enhancing miRNA processing. 相似文献
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Haengdueng Jeong Youn Woo Lee In Ho Park Hyuna Noh Sung-Hee Kim Jiseon Kim Donghun Jeon Hui Jeong Jang Jooyeon Oh Dain On Chanyang Uhm Kyungrae Cho Heeju Oh Suhyeon Yoon Jung Seon Seo Jeong Jin Kim Sang-Hyuk Seok Yu Jin Lee Seung-Min Hong Se-Hee An Seo Yeon Kim Young Been Kim Ji-Yeon Hwang Hyo-Jung Lee Hong Bin Kim Dae Gwin Jeong Daesub Song Manki Song Man-Seong Park Kang-Seuk Choi Jun Won Park Jun-Young Seo Jun-Won Yun Jeon-Soo Shin Ho-Young Lee Ki Taek Nam Je Kyung Seong 《Disease models & mechanisms》2022,15(11)
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178.
三聚氰胺胶体金免疫层析试纸条的研制 总被引:3,自引:0,他引:3
通过胶体金免疫层析技术建立一种特异、便捷、快速的三聚氰胺抗原检测方法,对奶制品及饲料中的三聚氰胺残留水平监测提供参考。用柠檬酸三钠还原法制备的胶体金,标记纯化的三聚氰胺单克隆抗体,喷于试纸的金标垫。将MEL-OVA(三聚氰胺和卵清白蛋白的偶练物)和纯化的羊抗鼠IgG分别喷于试纸的T(检测线)处和C(质控线)处,通过挑选试纸条材料和调试工艺参数,并最终组装成试纸条。结果显示,制备的试纸监测体系方法检出限为50 g/L。试纸条对牛奶、奶粉和饲料中的三聚氰胺残留的检出限分别为100 g/L、100 ng/g和200 ng/g。将该法与LC-MS/MS法对比检测牛奶、奶粉和饲料样品,在试纸条检测范围内,与LC-MS/MS法检测结果一致性好,从而验证了该方法的有效性。制备的三聚氰胺胶体金检测试纸在常温干燥环境下至少可保质6个月,能够检测出三聚氰胺含量大于50 g/L的样品,适用于现场实际样品三聚氰胺残留水平监测,具有良好的应用前景。 相似文献
179.
不同水稻品种对稻纵卷叶螟生长发育、存活、生殖及飞行能力的影响 总被引:2,自引:0,他引:2
系统研究了稻纵卷叶螟在6种不同水稻品种(常规粳稻武育粳3号,杂交粳稻宁粳1号,常规籼稻TN1,杂交籼稻汕优63,超级杂交籼稻两优培九,超级杂交籼粳稻甬优9号)上取食后的发育历期、存活率、卵巢发育进度、繁殖力和飞行能力.结果表明,武育粳3号和宁粳1号能显著延长稻纵卷叶螟未成熟期的发育历期,降低其存活率,延缓卵巢发育进度,降低成虫繁殖率,并提高成虫的飞行能力;不同水稻品种间的影响存在显著差异,其影响从大到小排列为杂交粳稻>常规粳稻>常规籼稻>杂交籼稻>超级杂交稻.这说明,幼虫期营养对稻纵卷叶螟的生长发育、存活、生殖和飞行能力具有显著影响. 相似文献
180.
The biochemical mechanisms underlying thidiazuron (TDZ)-induced regeneration in plant cells have not been clearly elucidated.
Exposure of leaf explants of Echinacea purpurea to a medium containing TDZ results in undifferentiated cell proliferation and differentiated growth as mixed shoot organogenesis
and somatic embryogenesis. The current studies were undertaken to determine the potential roles of auxin, indoleamines, and
ion signaling in the dedifferentiation and redifferentiation of plant cells. E. purpurea leaf explants were found to contain auxin and the related indoleamine neurotransmitters, melatonin, and serotonin. The levels
of these endogenous indoleamines were increased by exposure to TDZ associated with the induction of regeneration. The auxin-transport
inhibitor 2,3,5-triiodobenzoic acid and auxin action inhibitor, p-chlorophenoxyisobutyric acid decreased the TDZ-induced regeneration but increased concentrations of endogenous serotonin
and melatonin. As well, inhibitors of calcium and sodium transport significantly reduced TDZ-induced morphogenesis while increasing
endogenous indoleamine content. These data indicate that TDZ-induced regeneration is the manifestation of a metabolic cascade
that includes an initial signaling event, accumulation, and transport of endogenous plant signals such as auxin and melatonin,
a system of secondary messengers, and a concurrent stress response. 相似文献