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111.
果蝇原生殖细胞特化的分子机制 总被引:2,自引:0,他引:2
原生殖细胞在许多有性生殖动物的胚胎发育早期就已特化出来,并进一步分化为生殖细胞以产生新的子代。动物原生殖细胞的特化主要有生殖质决定和诱导两种模式,果蝇原生殖细胞的特化模式属于前者。研究表明,果蝇原生殖细胞特化过程中生殖质组装的关键基因是osk,其调控下游基因转录产物的定位和翻译,如vas和tud。此外,基因转录沉默是原生殖细胞特化过程的一个重要特征,其与生殖质中的成分如基因nos、gcl、pgc的表达产物密切相关。现对果蝇原生殖细胞特化分子机制进行综述。 相似文献
112.
乐至黑山羊PRLR基因外显子10多态性与产羔数的关系研究 总被引:2,自引:0,他引:2
设计2对特异性引物对乐至黑山羊PRLR基因第10外显子进行了PCR-SSCP检测,并研究该基因与产子性能的相关性。结果表明,P1引物扩增片段不存在多态性;P2引物扩增片段存在多态性,表现为AA,AB,AD和CD 4种基因型,测序结果表明,4种基因型都在该片段第89、94、146和157位存在C→T、A→C、C→G、G→C的突变;此外AA型还在61位发生C→T的突变;AD型还在175位发生A→G的突变;CD型还在24位发生T→C的突变,96位发生C→T的突变,通过统计分析发现AD型平均产羔数优于其他3种基因型,并且与AB型差异达到显著水平(P<0.05)。因此认为PRLR基因对于乐至黑山羊产子性能有一定的影响。 相似文献
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Loss-of-function diseases are often caused by a mutation in a protein traversing the secretory pathway that compromises the normal balance between protein folding, trafficking, and degradation. We demonstrate that the innate cellular protein homeostasis, or proteostasis, capacity can be enhanced to fold mutated enzymes that would otherwise misfold and be degraded, using small molecule proteostasis regulators. Two proteostasis regulators are reported that alter the composition of the proteostasis network in the endoplasmic reticulum through the unfolded protein response, increasing the mutant folded protein concentration that can engage the trafficking machinery, restoring function to two nonhomologous mutant enzymes associated with distinct lysosomal storage diseases. Coapplication of a pharmacologic chaperone and a proteostasis regulator exhibits synergy because of the former's ability to further increase the concentration of trafficking-competent mutant folded enzymes. It may be possible to ameliorate loss-of-function diseases by using proteostasis regulators alone or in combination with a pharmacologic chaperone. 相似文献
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Analysis of temperature‐mediated changes in the wine yeast Saccharomyces bayanus var uvarum. An oenological study of how the protein content influences wine quality 下载免费PDF全文
Eugenia Muñoz‐Bernal Michael J. Deery María Esther Rodríguez Jesús M. Cantoral Julie Howard Renata Feret Ramón Natera Kathryn S. Lilley Francisco Javier Fernández‐Acero 《Proteomics》2016,16(4):576-592
Saccharomyces bayanus var. uvarum plays an important role in the fermentation of red wine from the D.O. Ribera del Duero. This is due to the special organoleptic taste that this yeast gives the wines and their ability to ferment at low temperature. To determine the molecular factors involved in the fermentation process at low temperature, a differential proteomic approach was performed by using 2D‐DIGE, comparing, qualitatively and quantitatively, the profiles obtained at 13 and 25°C. A total of 152 protein spots were identified. We detected proteins upregulated at 13°C that were shown to be related to temperature stress, the production of aromatic compounds involved in the metabolism of amino acids, and the production of fusel alcohols and their derivatives, each of which is directly related to the quality of the wines. To check the temperature effects, an aromatic analysis by GC–MS was performed. The proteomic and “aromatomic” results are discussed in relation to the oenological properties of S. bayanus var. uvarum. 相似文献
117.
利用聚丙烯酰胺凝胶电泳对小麦品种天选15号、天选15号—4D缺体,黑麦品种德国白粒及利用“缺体回交法”培育的小麦(4D)一黑麦(4R)异代换系幼苗的过氧化物酶同工酶、细胞色素氧化酶同工酶及酯酶同工酶进行了研究,结果表明4D染色体对小麦的一种过氧化物酶同工酶和一种细胞色素氧化酶同工酶量的合成具有控制作用,在小麦4D缺体的遗传背景下,黑麦4R染色体能够补偿由于4D缺失引起的这两种同工酶合成降低的效应。4D对小麦幼苗期酯酶同工酶的合成没有明显的作用,4R在小麦4D缺体遗传背景下对酯酶同工酶的合成也没有明显的影响 相似文献
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Yue Lv Gang Lu Yuling Cai Ruibao Su Liang Liang Xin Wang Wenyu Mu Xiuqing He Tao Huang Jinlong Ma Yueran Zhao Zi-Jiang Chen Yuanchao Xue Hongbin Liu Wai-Yee Chan 《蛋白质与细胞》2023,14(1):51
RBM46 is a germ cell-specific RNA-binding protein required for gametogenesis, but the targets and molecular functions of RBM46 remain unknown. Here, we demonstrate that RBM46 binds at specific motifs in the 3ʹUTRs of mRNAs encoding multiple meiotic cohesin subunits and show that RBM46 is required for normal synaptonemal complex formation during meiosis initiation. Using a recently reported, high-resolution technique known as LACE-seq and working with low-input cells, we profiled the targets of RBM46 at single-nucleotide resolution in leptotene and zygotene stage gametes. We found that RBM46 preferentially binds target mRNAs containing GCCUAU/GUUCGA motifs in their 3ʹUTRs regions. In Rbm46 knockout mice, the RBM46-target cohesin subunits displayed unaltered mRNA levels but had reduced translation, resulting in the failed assembly of axial elements, synapsis disruption, and meiotic arrest. Our study thus provides mechanistic insights into the molecular functions of RBM46 in gametogenesis and illustrates the power of LACE-seq for investigations of RNA-binding protein functions when working with low-abundance input materials. 相似文献
120.
Wenli Hui Zhipeng Yang Ke Fang Mengdi Wu Wenhua Mu Cong Zhao Dan Xue Tengteng Zhu Xiao Li Ming Gao Yunhua Lu Kunping Yan 《Current issues in molecular biology》2022,44(6):2683
Excessive reactive oxygen species (ROS), a highly reactive substance that contains oxygen, induced by ultraviolet A (UVA) cause oxidative damage to skin. We confirmed that hemin can catalyze the reaction of tyrosine (Tyr) and hydrogen peroxide (H2O2). Catalysis was found to effectively reduce or eliminate oxidative damage to cells induced by H2O2 or UVA. The scavenging effects of hemin for other free-radical ROS were also evaluated through pyrogallol autoxidation, 1,1-diphenyl-2-picrylhydrazyl radical (DPPH·)-scavenging assays, and phenanthroline–Fe2+ assays. The results show that a mixture of hemin and tyrosine exhibits strong scavenging activities for H2O2, superoxide anion (O2−·), DPPH·, and the hydroxyl radical (·OH). Furthermore, the inhibition of oxidative damage to human skin keratinocyte (HaCaT) cells induced by H2O2 or UVA was evaluated. The results show that catalysis can significantly reduce the ratio of cell apoptosis and death and inhibit the release of lactate dehydrogenase (LDH), as well as accumulation of malondialdehyde (MDA). Furthermore, the resistance to apoptosis was found to be enhanced. These results show that the mixture of hemin and tyrosine has a significantly protective effect against oxidative damage to HaCaT cells caused by UVA, suggesting it as a protective agent for combating UVA damage. 相似文献