世界最杰出的生物医学论文
生物类(生物科学等)专业毕业论文5篇范文

生物类(生物科学等)专业毕业论文5篇范文第一篇:生物类(生物科学等)专业毕业论文RLK基因遗传转化植株的筛选与鉴定生物技术专业指导教师摘要:番茄青枯病是严重影响番茄生产的病害之一,有“植物中的癌症”之称。
植物体中类受体蛋白激酶(Receptor Likekinase RLK)有提高抗逆性的功能,本研究利用分子克隆技术将辣椒中的。
基因转入番茄中,以期获得对青枯病具有抗性的番茄植株。
除了利用传统的形态学比较的方法外,本文主要利用PCR和RT-PCR技术对三个番茄品种的转基因植株的T1代进行转基因后的分子鉴定。
结果显示,三种转基因番茄经特异引物PCR后均能产生特异性条带,而且D-RLK-6号经RT-PCR后能够产生特异的条带,这表明目的基因都已经成功转入三种转基因番茄基因组内,并且能够顺利遗传给后代,另外D-RLK-6号的CaRLK基因能够顺利表达。
此研究将为番茄青枯病的防治提供重要的理论支撑。
关键词:番茄;CaRLK;分子鉴定;PCR ;RT-PCRThe Selection and Identification of CaRLK Transgenic Tomatoes PlantsTomato bacterial wilt is a serious disease affecting tomato production and it is called “the Cancer Abstract:of Plant”.The Receptor Likekinase(RLK)in plants can increase their resistance function.In this study, we used molecular cloning technology to transfer the CaRLK from pepper to tomato, hoping to obtain bacterial wilt-resistant tomato plants.In addition to using traditional methods, such as morphological comparison, we mainly used PCR and RT-PCR to identify the three varieties of transgenic tomato plants of T1 generation of D-RLK-2, D-RLK-6 and D-RLK-10.ResuLts showed that three transgenic plants afterthe process of PCR by specific primers were able to produce specific bands, and that the D-RLK-6 produced specific band after the process of RT-PCR by specific primers, suggesting that the CaRLK gene had been successfully transferred into transgenic tomato genome.This study will provide important theoretical support for the prevention and control of tomato bacterial wilt.Key words :Lycopersicon escuLentumMill;CaRLK;Molecular identification;PCR;RT-PCR引言番茄(Lycopersicon escuLentumMill)别名西红柿,古名六月柿、喜报三元。
诺贝尔奖生物医学类成果精编版

诺贝尔奖生物医学类成果精编版自从1901年卡尔·冯·林奈和更诺贝尔创立了诺贝尔奖以来,生物医学的领域就成为了诺贝尔奖一个重要的领域。
以下是一些获得诺贝尔奖的生物医学类成果的精编版:1. 发现视网膜中的色素:冈瑟·瑞纳、乔治·沃尔德、罗伯特·埃米尔·弗劳恩霍夫(1915年)冈瑟·瑞纳、乔治·沃尔德和罗伯特·埃米尔·弗劳恩霍夫发现,视网膜中存在一种叫做视紫红质的圆锥色素和一种叫做视黄醇的杂环化合物。
这两种化合物可以相互转化,并帮助我们的眼睛适应低光强度和日光的变化。
2. 发现胆固醇的作用:约翰·阿隆德、阿瑟·凯恩斯(1926年)约翰·阿隆德和阿瑟·凯恩斯发现,动物细胞中极为重要的胆固醇,可以维持细胞的稳定性并帮助消化和吸收脂肪。
他们的工作对于了解心脏病、中风和其他疾病的发生机理具有重要的意义。
3. 发现抗生素:亚历山大·弗莱明(1945年)亚历山大·弗莱明发现,一种名为青霉素的真菌可以杀死细菌并治疗感染病。
他的工作为抗生素的发现奠定了基础,并使得世界上的许多感染病可以被有效地治疗。
4. 发现DNA结构:詹姆斯·沃森、弗朗西斯·克里克、莫里斯·威尔金斯(1962年)詹姆斯·沃森、弗朗西斯·克里克和莫里斯·威尔金斯发现,DNA是由两根互补的螺旋式结构组成的,这些结构通过氢键相互结合。
这项工作被视为现代生物学的一个里程碑,并有助于解决许多遗传和基因问题。
5. 关于神经系统的研究:约翰·艾克尔斯、阮莎德、伯纳德·卡茨(1963年)约翰·艾克尔斯、阮莎德和伯纳德·卡茨发现了神经系统中化学信号传递的机制,并解释了这种信号如何触发肌肉的收缩和松弛。
这个发现在心血管、肌肉和中枢神经系统研究方面起着重要的作用。
科学家发明新药,治愈癌症作文

科学家发明新药,治愈癌症作文
哎哟,不得了啦!最近科学家真的搞出大事了!他们居然发明了一种新药,能直接治愈癌症!你没听错,就是那种让人闻风丧胆的癌症!
想象一下啊,以前得了癌症的人,都得经历化疗、放疗那些痛苦的治疗过程,身体被折磨得不成样子,还不一定能治好。
但现在呢?有了这种新药,就像吃了一颗神奇的糖果,癌症就消失得无影无踪了!
这新药啊,据说是在实验室里经过无数次试验才成功的。
科学家们可是费了好大劲,才找到了能够精准打击癌细胞的方法。
这可比打地鼠还难呢!但他们就是做到了,真是厉害得不得了!
我听说啊,这新药已经开始了临床试验,效果简直好到让人难以置信。
那些原本被癌症折磨得奄奄一息的病人,吃了这药之后,没过多久就恢复了健康,跟没事人一样!这简直就像是科幻电影里的情节啊!
这新药的发明,可是给全世界癌症患者带来了福音。
想想看,
以后人们再也不用害怕癌症了,这得多让人兴奋啊!科学家们真是
太伟大了,他们用自己的智慧和努力,给人类带来了这么大的好处!
当然啦,这新药的发明也不是一蹴而就的。
科学家们可是付出
了很多心血和汗水,才取得了这样的成果。
所以啊,我们应该向他
们表示敬意和感谢!希望以后能有更多这样的好消息传来,让我们
的生活变得更加美好!。
科学家发明新药,治愈癌症作文

科学家发明新药,治愈癌症作文
在科学的大海里,终于找到了颗闪亮的星星!科学家们拼了老命,搞出了能打败癌症的新药!这简直是个天大的好消息,给那些
患者们送去了希望的曙光。
这新药啊,真的是医学界的骄傲!它可不是随便搞出来的,是
科学家们辛辛苦苦、一点一滴研究出来的。
从细胞开始,再到分子
层面,最后经过严格的临床测试,每一步都走得不容易。
这新药的作用真的很神奇!它能直接找到那些坏细胞,把它们
干掉,同时还能唤醒咱们身体里的“警察”,一起对付那些坏东西。
这样一来,既有效又安全,真是太牛了!
想想那些癌症患者,以前得受多少苦啊!现在有了这新药,他
们就能少受点罪了。
不用像以前那样,被病痛折磨得死去活来,还
得忍受化疗的副作用。
现在只要按时吃药,就有机会战胜癌症,生
活也能慢慢回归正轨。
这新药一出来,整个医学界都沸腾了!大家都说这是医学的一
大步,以后治疗癌症可能就不再是难题了。
这不仅能改变治疗方式,
还能推动医学更上一层楼。
科学家们也都受到了鼓舞,纷纷表示要继续努力,为人类健康做更多贡献。
总之啊,这新药的问世真是个好消息!让我们为科学家们点个赞,也为那些即将受益的患者们送上最真挚的祝福!。
生物科学名人事例

生物科学名人事例全文共四篇示例,供读者参考第一篇示例:生物科学是一门研究生命的起源、演化、结构和功能等方面的学科,涉及到生物的各个方面,如细胞生物学、分子生物学、遗传学、生态学等。
在这个广阔的领域里,涌现出了许多杰出的科学家和研究者,他们为生物科学做出了卓越的贡献,推动了整个领域的发展。
本文将介绍一些生物科学领域的名人事例。
1. 辛格-罗尔夫·扬森辛格-罗尔夫·扬森(Svante Pääbo)是瑞典籍的生物学家,以其在人类基因组学和古人类遗传学方面的研究而闻名。
他是著名的帕弗洛夫研究所的成员之一,也是人类基因组计划的一部分。
他的工作围绕着尼安德特人和其他古代人类的基因组学,通过研究这些遗传信息,揭示了人类起源和演化的故事。
2. 艾琳·格里克艾琳·格里克(Erin Brockovich)是一位环保主义者和公共卫生倡导者,她以揭露导致加利福尼亚州黑壤灾难的环境污染事件而闻名。
她的努力最终促使一家大型能源公司对其造成的环境破坏进行赔偿和整改。
她的事迹不仅在于揭露环境污染问题,更在于激励和启发了无数人投身环保事业。
3. 简·古道尔简·古道尔(Jane Goodall)是一位英国的动物行为学家和环保主义者,她长期在非洲进行关于黑猩猩行为的研究。
她的工作揭示了黑猩猩的复杂社会结构和智力,对我们理解人类的进化和行为模式产生了重要影响。
她也是全球环保运动的重要人物之一,提倡人类与自然的和谐共生。
4. 詹姆斯·沃森詹姆斯·沃森(James Watson)是一位美国遗传学家,他与弗朗西斯·克里克(Francis Crick)合作发现了DNA的双螺旋结构,为现代分子生物学的发展奠定了基础。
他们的发现赢得了1962年的诺贝尔生理学或医学奖,对于遗传学、生物化学和医学的进步产生了深远的影响。
5. 朱莉安娜·华生朱莉安娜·华生(Juliana Huxley)是一位英国生态学家和环保主义者,她致力于保护野生动物和生态系统的多样性。
科学家发明治愈癌症的药作文

科学家发明治愈癌症的药作文英文回答:Scientists have made a groundbreaking discovery in the field of cancer treatment. They have invented arevolutionary drug that can cure cancer. This drug has shown remarkable results in clinical trials and has the potential to save millions of lives worldwide.The drug, named XYZ-123, works by targeting and destroying cancer cells while leaving healthy cells unharmed. It does this by inhibiting the growth anddivision of cancer cells, ultimately leading to their death. This targeted approach is a major breakthrough in cancer treatment, as it minimizes the side effects commonly associated with traditional chemotherapy and radiation therapy.The development of XYZ-123 involved years of research and collaboration among scientists from differentdisciplines. They studied the underlying mechanisms of cancer cell growth and identified specific moleculartargets that could be exploited for therapeutic purposes. Through rigorous testing and refinement, they successfully created XYZ-123, a potent and highly selective drug.In clinical trials, XYZ-123 has shown unprecedented efficacy in treating various types of cancer, including lung, breast, colon, and prostate cancer. Patients who received the drug experienced significant tumor shrinkage, improved overall survival rates, and enhanced quality of life. The results were so promising that the drug has received fast-track approval from regulatory authorities, allowing it to be available to patients as soon as possible.The introduction of XYZ-123 represents a major turning point in the fight against cancer. It offers hope topatients who previously had limited treatment options and faced uncertain outcomes. With this drug, cancer is no longer a death sentence but a manageable disease that canbe cured.中文回答:科学家在癌症治疗领域取得了突破性的发现。
微生物名人事例

微生物名人事例中外微生物学史重要人物的生平事迹研究摘要:微生物是包括细菌、病毒、真菌以及一些小型的原生动物、显微藻类等在内的一大类生物群体,它个体微小,却与人类生活关系密切。
列文虎克发明显微镜之后,微生物便为人们所熟知,继列文虎克发现微生物世界以后的200年间,微生物学的研究基本上停留在形态描述和分门别类阶段。
直到19世纪中期,以法国的巴斯德(louispasteur,1822-1895)和德国的柯赫(robertkoch,1843-1910)为代表的科学家才将微生物的研究从形态描述推进到生理学研究阶段,揭露了微生物是造成腐败发酵和人畜疾病的原因,并建立了分离、培养、接种和灭菌等一系列独特的微生物技术。
从而奠定了微生物学的基础,同时开辟了医学和工业微生物等分支学科。
关键词:列文?虎克巴斯德科赫院士沙眼巴氏杀菌historyofchineseandforeignmicrobiallifestoriesofimportantfigureskeywords:leeuwenhoekpasteurkochacademiciantrachomapasteurization列文?虎克,英文名(antonievanleeuwenhoek,1632.10.24-1723.08.26)荷兰显微镜学家、英国皇家学会会员、微生物学的开拓者。
早期列文?虎克就对在放大透镜下所展示的显微世界显示出了浓厚的兴趣,他观察的对象也极为广泛,有晶体、矿物、植物、动物、微生物、污水等等。
原是拉丁文dierken的译音,意即细小活泼的物体。
1674年他开始观察细菌和原生动物即他所谓的“非常微小的动物”。
他还测算了它们的大小。
1677年首次描述了昆虫、狗和人的精子。
1684年他精确地叙述了红细胞,证明马尔皮基推断的毛细血管层就是真实存有的。
1702年他在细心观测了轮虫以后,表示在所有室外积水中都可以找出微生物,因为这些微生物粘附在微尘上、漂浮于空中并且随风迁移。
生物医学工程专业毕业论文

生物医学工程专业毕业论文在当今迅速发展的医疗技术和生物学领域中,生物医学工程专业毕业论文扮演着至关重要的角色。
本文将探讨生物医学工程专业的发展趋势、研究热点以及未来的发展方向。
生物医学工程是一门跨学科的科学,结合了工程学、生物学和医学的原理与技术,旨在应用工程原理和技术解决医学和生物学领域的问题。
生物医学工程旨在改善病患的生活质量,提高医疗保健的效率和质量。
生物医学工程的研究涵盖了多个领域,包括医学成像、仿生技术、生物材料、生物传感器等。
其中,医学成像是生物医学工程领域的重要研究方向之一。
通过使用各种先进的成像技术,如X射线、磁共振成像(MRI)、超声等,可以帮助医生对疾病进行早期诊断和治疗。
研究生物医学工程的学生可以通过研究不同成像技术的原理、应用和改进来推动医学成像技术的发展。
仿生技术也是生物医学工程领域的重要研究方向之一。
通过仿生技术,科学家们试图根据生物体的结构和功能来设计和制造新的医疗器械和系统。
例如,通过模仿昆虫的感官系统来设计更高效的传感器,或通过模仿人体的运动机能来开发更先进的假肢和外骨骼。
生物医学工程的研究可帮助科学家们了解人体的生理和生物力学原理,并将其应用于医学设备和系统的设计和制造中。
生物材料也是生物医学工程领域的关键研究方向。
许多医学设备和植入物都需要使用合适的材料来确保其安全和有效性。
生物医学工程的研究生可以通过研究生物材料的生物相容性、机械性能等属性来开发新型材料,并将其应用于医学领域。
生物传感器是近年来备受关注的研究领域之一。
生物传感器可以检测和测量生物体内部的生理参数,并将其转化为可读的信号。
这些传感器可以用于早期疾病诊断、药物效果监测等方面。
生物医学工程的研究生可以通过设计和制造新型的生物传感器,推动医疗诊断技术的发展。
未来,生物医学工程领域将面临许多新的挑战和机遇。
随着人口老龄化和慢性疾病的增加,对医疗保健的需求将继续增长。
因此,研究生物医学工程的学生将发挥重要的作用,帮助解决这些挑战。
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世界最杰出的生物医学论文千名生物学家(Faculty of 1000 Biology)和千名医学家(Faculty of 1000 Medicine)是英国BioMed Central出版集团,所建立的两个医学生物学论文数据库。
它是由美国哈佛大学和英国剑桥大学等近5000多名世界顶级生物医学同行专家,所推荐和评选出的世界医学和生物学的最新发表的论文所组成。
论文依据创新性、新理论、新发现、新技术、科学价值和实际应用前景等原则,从世界上几千种重要的医学生物学杂志,成千上万篇论文中,实时进行筛选和评定,评选出F1000因子,并进行分级排序,分为杰出(Exceptional 9分)、必读(Must Read 6分)和推荐(Recommend 3分)三个级别,并写有简短的评语。
再向医学生物学界进行推荐和发布,以提供世界上最重要、最优秀的生物医学论文信息和最新研究成果与发展趋势。
F1000只重视论文的实际科学价值和临床应用前景,不考虑期刊的状况和论文在何处发表,影响因子(I F)值也仅仅作为辅助参考指标。
被推荐出的论文不足SCI发表论文的千分之二,其中杰出的论文仅占所推荐论文的5%。
F1000还依据不同的科学领域,适时评选出最近和最受关注(Must-Viewed)的10篇最佳论文,称为“Top 10”,并不断更新。
此外还邀请世界上最知名和权威的领域科学家,编写生物医学最近的进展、评论和综述,刊登在“F1000 Reports上”。
F1000是一个新的医学生物学论文数据库,是一个新的生物医学论文评价工具,是一个新的医学论文评估的专家系统。
它不仅可以帮助我们来快速检索世界上最“杰出”、“必须阅读”和“值得推荐”的生物医学论文;还可以了解每篇发表论文的专家评价观点和意见,使我们可以节时、高效、全面认识和了解当今世界上生物医学最新研究成果和发展动向,引导和促进生物医学科学的发展。
研究论文能为F1000所收录和推荐,成为F1000“杰出”论文,代表着该论文的极高的科学水平和重要的科学价值。
目前我国每年被SCI收录的医学生物学论文已逾万篇,成为“论文大国”,但能为F1000收录为“杰出”的论文却寥寥。
以2009—2010年为例,在F1000收录和推荐出1017篇“杰出”论文中,中国只有11篇,其中还有4篇是台湾和香港的。
从2000—2010年F1000共评出近5000篇“杰出”论文,中国(包括台湾和香港)总共只有25有篇。
反应出我国现在医学生物学研究“跟”多“创”少,重“量”不重“质” ;一般资料性的工作多,有创新性、有实际应用价值、有重要理论和应用前景的论文少的潜在而深刻的危机。
我们必须在原始创新和实际应用上再上一层楼!我们要发表SCI论文,要发表高IF影响因子论文;我们更要多发表F1000“杰出”论文,发表创新性强,有重要理论价值和实际应用前景的科学论文,这才能成为真正的科技强国。
这里我们收集了2009-2010年心血管、肿瘤、细胞生物学、分子生物学、免疫学、神经科学等领域F1000的“杰出”论文供大家参考,更多的F1000论文,可在F1000Biology和F1000Medicine网站上搜索。
• Biochemistry• Bioinformatics• Biotechnology• Cancer Biology• Cardiovascular Biology• Cell Biology• Chemical Biology• Developmental Biology• Ecology• Evolutionary Biology• Gastrointestinal Biology• Genomics & Genetics• Immunology• Metabolic & Endocrine Science• Microbiology• Molecular Biology• Molecular Medicine• Neuroscience• Pharmacology & Drug Discovery• Physiology• Plant Biology• Renal Biology• Respiratory Biology• Structural Biology• Anesthesiology & Pain Management• Cardiovascular Disorders• Critical Care & Emergency Medicine• Dermatology• Diabetes & Endocrinology• Gastroenterology & Hepatology• Hematology• Infectious Diseases• Nephrology• Neurological Disorders• Oncology• Otolaryngology• Psychiatry• Public Health & Epidemiology• Research Methodology• Respiratory Disorders• Rheumatology & Clinical Immunology• Urology• Women's Health________________________________________F1000 Reportcell-A mover and a shaker'- 53BP1 allows DNA doublestrand breaks a chance to dance and unitecell-A virtual cycle- theory and experiment converge on the exit from mitosiscell-Aberrant mRNA transcripts and nonsense-mediated decaycell-Autophagy of intracellular microbes and mitochondria- two sides of the same coincell-Brd4 engagement from chromatin targeting to transcriptional regulation- selective contact with acetylated histone H3 and H4cell-Conformational changes in receptor tyrosine kinase signaling- an ErbB garden of delightscell-Destroy to create- E3 ubiquitin ligases in neurogenesiscell-Doing cell biology in embryos- regulated membrane traffic and its implications for cadherin biologycell-Epigenetic regulation of antigen receptor gene rearrangementcell-G-protein-coupled receptor structurecell-Induced pluripotent stem (iPS) cells- an up-to-the-minute reviewcell-Inhibitor of Apoptosis (IAP) proteins as drug targets for the treatment of cancercell-Intracellular trafficking and signaling in developmentcell-LOV conquers (sm)All GTPasescell-Membrane deformation and separationcell-Microtubule motors- moving forward on many frontscell-Mitochondria and apoptosis- a quick take on a long viewcell-novel functions of the exocyst complex in polarized epithelia in animalscell-PARP inhibitors in BRCA1-BRCA2 germline mutation carriers with ovarian and breast cancercell-Plk4-SAK-ZYG-1 in the regulation of centriole duplicationcell-Putative functions of caspase-2cell-Recent advances in polyubiquitin chain recognitioncell-Recent advances in understanding Golgi biogenesiscell-Regulatory roles of the cadherin superfamilycell-Role of caspases and non-caspase proteases in cell deathcell-Roles of AD-cofilin in actin polymerization and beyondcell-Roles of the small GTPases RhoA and Rac1 in cell behaviorcell-Single-molecule dynamics of nuclear mRNAcell-Spindle checkpoint silencing- ensuring rapid and concerted anaphase onsetcell-Telomeric RNAs as a novel player in telomeric integritycell-The roles, mechanisms, and controversies of autophagy in mammalian 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cellsns-Multiple functions of dopamine neuronsns-Music drives brain plasticityns-Neuronal calcium sensor proteinsns-Recent advances in neural developmentns-Seeing with the mind's eyens-Setting the absolute threshold of visionns-Sources of the spatial code within the hippocampusns-The growth cone- an integrator of unique cues into refined axon guidancens-The posterior parietal cortex and non-spatial cognitionns-Transcranial magnetic stimulation studies of visuospatial attentional controlns-What drives corticospinal outputns-Why do oligodendrocyte lineage cells express glutamate receptorsphysiol-'Functional' body composition- differentiating between benign and non-benign obesityphysiol-Biased agonismphysiol-Bitopic ligands- all-in-one orthosteric and allostericphysiol-Central control of feedingphysiol-Depression and metabolism- linking changes in leptin and ghrelin to moodphysiol-Malarial parasite pathogenesis and drug targetsphysiol-Multiple functions of dopamine neuronsphysiol-New 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domainsstructural biology-Unnatural amino acids- better than the real thingsF1000 Top 10bi-A genome-wide study identifies HLA alleles associated with lumiracoxib-related liver injurybi-Cell line misidentification- the beginning of the endbi-Chaperonin-dependent accelerated substitution rates in prokaryotesbi-Engineered bacterial communication prevents Vibrio cholerae virulence in an infant mouse modelbi-Genome-wide non-mendelian inheritance of extra-genomic information in Arabidopsisbi-High-resolution analysis of parent-of-origin allelic expression in the mouse brainbi-Long-timescale molecular-dynamics simulations of the major urinary protein provide atomistic interpretations of the unusual thermodynamics of ligand bindingbi-Mammalian microRNAs predominantly act to decrease target mRNA levelsbi-Robust Growth of Escherichia colibi-Sex-specific parent-of-origin allelic expression in the mouse brainbi-Structure determination of the seven-helix transmembrane receptor sensory rhodopsin II by solution NMR spectroscopybi-The genetic landscape of a cellbiochem-Functional modules and structural basis of conformational coupling in mitochondrial complex I biochem-In Vivo Double and Triple Labeling of Proteins Using Synthetic Amino Acidsbiochem-One SNARE complex is sufficient for membrane fusionbiochem-Ribosome dynamics and tRNA movement by time-resolved electron cryomicroscopybiochem-Robust Growth of Escherichia colibiochem-Self-confirming AND logic nanoparticles for fault-free MRIbiochem-Structure determination of the seven-helix transmembrane receptor sensory rhodopsin II by solution NMR spectroscopybiochem-Structure of RCC1 chromatin factor bound to the nucleosome core particlebiochem-Structure of the torque ring of the flagellar motor and the molecular basis for rotational switching biochem-The architecture of respiratory complex Ibiochem-The functional capacity of the natural amino acids for molecular recognitionbiochem-Widespread Protein Aggregation as an Inherent Part of Aging in C. elegansbiology-Activation of beta-catenin in dendritic cells regulates immunity versus tolerance in the intestinebiology-An interferon-inducible neutrophil-driven blood transcriptional signature in human tuberculosisbiology-Astrocytes control breathing through pH-dependent release of ATPbiology-Chaperonin-dependent accelerated substitution rates in prokaryotesbiology-Crucial role for human Toll-like receptor 4 in the development of contact allergy to nickelbiology-Fatty acid oxidation and malonyl-CoA decarboxylase in the vascular remodeling of pulmonary hypertensionbiology-MiR-33 contributes to the regulation of cholesterol homeostasisbiology-Neuroscience and the correct level of explanation for understanding mindbiology-Role of secondary sensory cortices in emotional memory storage and retrieval in ratsbiology-Sipuleucel-T Immunotherapy for Castration-Resistant Prostate Cancerbiology-TGF-beta signaling specifies axons during brain developmentbiology-The Amphimedon queenslandica genome and the evolution of animal complexitybiology-The coevolution of human hands and feetbiotech-Anti-diabetic drugs inhibit obesity-linked phosphorylation of PPARgamma by Cdk5biotech-Exploiting the determinants of stochastic gene expression in Saccharomyces cerevisiae for genome-wide prediction of expression noisebiotech-Fragment-based drug discovery applied to hsp90. Discovery of two lead series with high ligand efficiency biotech-Genome-wide non-mendelian inheritance of extra-genomic information in Arabidopsisbiotech-Metabolomic and transcriptomic stress response of Escherichia colibiotech-Sex-specific parent-of-origin allelic expression in the mouse brainbiotech-Small-molecule inducers of insulin expression in pancreatic {alpha}-cellsbiotech-Structure determination of the seven-helix transmembrane receptor sensory rhodopsin II by solution NMR spectroscopybiotech-The genetic landscape of a cellbiotech-Type IIA topoisomerase inhibition by a new class of antibacterial agentsca-A septin diffusion barrier at the base of the primary cilium maintains ciliary membrane protein distributionca-Allogeneic hematopoietic cell transplantation for hematological malignancyca-An overlapping kinase and phosphatase docking site regulates activity of the retinoblastoma proteinca-Cdc14- a highly conserved family of phosphatases with non-conserved functionsca-Early 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misidentificationgenome-Chaperonin-dependent accelerated substitution rates in prokaryotesgenome-Chromosome size differences may affect meiosis and genome sizegenome-Common SNPs explain a large proportion of the heritability for human heightgenome-Dissecting cancer through mathematics- from the cell to the animal modelgenome-Global analysis of trans-splicing in Drosophilagenome-High-resolution analysis of parent-of-origin allelic expression in the mouse braingenome-Inaugural Article- Fast live simultaneous multiwavelength four-dimensional optical microscopy genome-Segregation of yeast nuclear poresgenome-Statistical design and analysis of RNA sequencing datagenome-The coevolution of human hands and feetgenome-The genetic landscape of a cellgenome-Trans-acting small RNA determines dominance relationships in Brassica self-incompatibilityimm-A novel role for the dioxin receptor in fatty acid metabolism and hepatic steatosisimm-Activation of a metabolic gene regulatory network downstream of mTOR complex 1imm-An interferon-inducible neutrophil-driven blood transcriptional signature in human tuberculosisimm-Duration of antibiotic therapy in hospitalised patients with community-acquired pneumoniaimm-Dynamics of subsynaptic vesicles and surface microclusters at the immunological synapseimm-Effects of thymic selection of the T-cell repertoire on HLA class I-associated control of HIV infectionimm-Evidence of dysregulation of dendritic cells in primary HIV infectionimm-Genetic variation in IL28B predicts hepatitis C treatment-induced viral clearanceimm-Glutamine uptake and metabolism are coordinately regulated by ERK-MAPK during T lymphocyte activation imm-IgT, a primitive immunoglobulin class specialized in mucosal immunityimm-Immature Dengue Virusimm-Lipid accumulation and dendritic cell dysfunction in cancerimm-Modification of MHC anchor residues generates heteroclitic peptides that alter TCR binding and T cell recognitionimm-Naturally arising human CD4 T-cells that recognize islet autoantigens and secrete interleukin-10 regulate proinflammatory T-cell responses via linked suppressionimm-Novel Treponema pallidum Serologic Testsimm-Patient safety culture- factors that influence clinician involvement in patient safety behavioursimm-Persistent activation of an innate immune response translates respiratory viral infection into chronic lung diseaseimm-Prolonged infectiousness of tuberculosis patients in a directly observed therapy short-course program with standardized therapyimm-Rational design of envelope identifies broadly neutralizing human monoclonal antibodies to HIV-1imm-Single-cell NF-kappaB dynamics reveal digital activation and analogue information processingimm-Standard versus newer antibacterial agents in the treatment of severe acute exacerbation of chronic obstructive pulmonary diseaseimm-Structural Basis for Broad and Potent Neutralization of HIV-1 by Antibody VRC01imm-The latest threat in the war on antimicrobial 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