维普中文期刊产品整合服务
8篇 您的检索式:作者名="Guangshuo Li"
    题名 作者 年代 出处 被引量
1CYLD mediates ciliogenesis in multiple organs by deubiquitinating Cep70 and inactivating HDAC6显示文摘睫是毛一般的细胞器从房间表面延长与重要感觉并且活动性功能。睫的缺点能导致作为 ciliopathies 知道的大量人的疾病。然而,控制 ciliogenesis 的分子的机制仍然保持糟糕定义。这里,我们显示出那 cylindromatosis (CYLD ) ,怀有 deubiquitinase 活动的肿瘤 suppressor 蛋白质,在多重机关在主要、能动的睫的集会起一个关键作用。CYLD 猛烈老鼠 polydactyly 展出并且各种各样的睫的缺点,例如在基础身体抛锚和基础身体和 axenomes 的组织的破坏的失败。CYLD 的睫的功能部分从 70 kDa (Cep70 ) 的 centrosomal 蛋白质被归因于它 polyubiquitin 链的 deconjugation,为 Cep70 到的一个要求与 γ 交往;导管素并且在中心体本地化。另外, histone deacetylase 的调停 CYLD 的抑制 6 (HDAC6 ) ,它支持导管素 acetylation,为 CYLD 的睫的功能组成另一机制。HDAC6 的小分子的禁止者能部分在 CYLD 猛烈老鼠救睫的缺点。这些调查结果在 ciliogenesis 的调整强调蛋白质 ubiquitination 的重要性,作为这个过程的一个关键管理者识别 CYLD,并且建议在 ciliopathies 的 CYLD 缺乏的参与。Yunfan Yang Jie Ran Min Liu Dengwen Li Yuanyuan Li Xingjuan Shi Dan Meng Junmin Pan Guangshuo Ou Rim Aneja Sbao-Cong Sun Jun Zhou 2014Cell Research2014,24,11:8
2Chromophore-assisted laser inactivation in neural development显示文摘Chromophore-assisted laser inactivation(CALI) is a technique that uses photochemically-generated reactive oxygen species to acutely inactivate target proteins in living cells.Neural development includes highly dynamic cellular processes such as asymmetric cell division,migration,axon and dendrite outgrowth and synaptogenesis.Although many key molecules of neural development have been identified since the past decades,their spatiotemporal contributions to these cellular events are not well understood.CALI provides an appealing tool for elucidating the precise functions of these molecules during neural development.In this review,we summarize the principles of CALI,a recent microscopic setup to perform CALI experiments,and the application of CALI to the study of growth-cone motility and neuroblast asymmetric division.Wei Li Nico Stuurman Guangshuo Ou 2012Neuroscience Bulletin2012,28,4:2
3The glial actin cytoskeleton regulates neuronal ciliogenesis显示文摘Hao Zhu Lianwan Chen Yihong Yang Zhiwen Zhu Xianliang Zhang Wei Li Long Miao Yan Zhang Guangshuo Ou 2017Cell Research2017,27,3:1
4Transcription factor STOX1 regulates proliferation of inner ear epithelial cells via the AKT pathway显示文摘Xiaowei Nie Kaiqing Zhang Li Wang Guangshuo Ou He Zhu Wei‐Qiang Gao 2015Cell Prolif2015,,2:1
5CENP-A的Ser68位动态磷酸化调控它在着丝粒区域的细胞周期依赖性装配显示文摘细胞出版社《发育细胞》创刊于2001年,本刊致力于搭建细胞生物学与发育生物学两大学科之间的桥梁。受过专业博士训l练的科学编辑与作者、审稿人、编委会成员共同合作,及时发布横跨两个领域令人振奋的研究成果,强调两个领域之间共同面临的问题以及相互之间的关系。该杂志2015年公布的影响因子为9.708。Zhouliang Yu Xiang Zhou Wenjing Wang Wenqiang Deng Junnan Fang Hao Hu Zichen Wang Shangze Li Lei Cui Jing Shen Linhui Zhai Shengyi Peng Jiemin Wong Shuo Dong Zengqiang Yuan Guangshuo Ou Xiaodong Zhang Ping Xu Jizhong Lou Na Yang Ping Chen Rui-Ming Xu 李国红 2016科学新闻2016,0,1:1
6Ciliopathy-associated proteins are involved in vesicle distribution in sensory cilia显示文摘Cilia play a wide range of critical roles in regulating cell motility,sensory signaling and metazoan development(Goetz and Anderson,2010;Reiter and Leroux,2017).Both motile cilia and pri-mary cilia consist of a basal body and a microtubule-based axoneme that is encompassed within the ciliary membrane.The formationand maintenance of ciliary structure depends on bidirectional intraflagellar transport(IFT):the kinesin-2 family motor proteins deliver ciliary precursors bound to the IFT particle protein complex from the ciliary base to the tip and the cytoplasmic dynein-2 recy-cles the anterograde IFT-protein machinery and ciliary turnover products back to the base(Scholey,2013;Reiter and Leroux,2017).Defects of ciliary structure and function lead to more than 35 types of systemic disorders in most human organ systems.which are collectively called ciliopathies(Reiter and Leroux,2017).187 established and 241 candidate ciliopathy-associated genes have been identified from the human genome(Reiter and Leroux,2017).Ming Li Wanzhong He Wei Li Guangshuo Ou 2019Journal of Genetics and Genomics2019,46,5:0
7A paternal protein facilitates sperm RNA delivery to regulate zygotic development显示文摘Sperm contributes essential paternal factors,including the paternal genome,centrosome,and oocyte-activation signals,to sexual reproduction.However,it remains unresolved how sperm contributes its RNA molecules to regulate early embryonic development.Here,we show that the Caenorhabditis elegans paternal protein SPE-11 assembles into granules during meiotic divisions of spermatogenesis and later matures into a perinuclear structure where sperm RNAs localize.We reconstitute an SPE-11 liquid-phase scaffold in vitro and find that SPE-11 condensates incorporate the nematode RNA,which,in turn,promotes SPE-11 phase separation.Loss of SPE-11 does not affect sperm motility or fertilization but causes pleiotropic development defects in early embryos,and spe-11 mutant males reduce m RNA levels of genes crucial for an oocyte-to-embryo transition or embryonic development.These results reveal that SPE-11 undergoes phase separation and associates with sperm RNAs that are delivered to oocytes during fertilization,providing insights into how a paternal protein regulates early embryonic development.Dongdong Li Shijing Huang Yongping Chai Ruiqian Zhao Jing Gong Qiangfeng Cliff Zhang Guangshuo Ou Wenyu Wen 2023Science China(Life Sciences)2023,66,10:0
8Fungal diversity notes 1036-1150:taxonomic and phylogenetic contributions on genera and species of fungal taxa显示文摘This article is the tenth series of the Fungal Diversity Notes,where 114 taxa distributed in three phyla,ten classes,30 orders and 53 families are described and illustrated.Taxa described in the present study include one new family(viz.Pseudoberkleasmiaceae in Dothideomycetes),five new genera(Caatingomyces,Cryptoschizotrema,Neoacladium,Paramassaria and Trochilispora)and 71 new species,(viz.Acrogenospora thailandica,Amniculicola aquatica,A.guttulata,Angustimassarina sylvatica,Blackwellomyces lateris,Boubovia gelatinosa,Buellia viridula,Caatingomyces brasiliensis,Calophoma humuli,Camarosporidiella mori,Canalisporium dehongense,Cantharellus brunneopallidus,C.griseotinctus,Castanediella meliponae,Coprinopsis psammophila,Cordyceps succavus,Cortinarius minusculus,C.subscotoides,Diaporthe italiana,D.rumicicola,Diatrypella delonicis,Dictyocheirospora aquadulcis,D.taiwanense,Digitodesmium chiangmaiense,Distoseptispora dehongensis,D.palmarum,Dothiorella styphnolobii,Ellisembia aurea,Falciformispora aquatic,Fomitiporia carpinea,F.lagerstroemiae,Grammothele aurantiaca,G.micropora,Hermatomyces bauhiniae,Jahnula queenslandica,Kamalomyces mangrovei,Lecidella yunnanensis,Micarea squamulosa,Muriphaeosphaeria angustifoliae,Neoacladium indicum,Neodidymelliopsis sambuci,Neosetophoma miscanthi,N.salicis,Nodulosphaeria aquilegiae,N.thalictri,Paramassaria samaneae,Penicillium circulare,P.geumsanense,P.mali-pumilae,P.psychrotrophicum,P.wandoense,Phaeoisaria siamensis,Phaeopoacea asparagicola,Phaeosphaeria penniseti,Plectocarpon galapagoense,Porina sorediata,Pseudoberkleasmium chiangmaiense,Pyrenochaetopsis sinensis,Rhizophydium koreanum,Russula prasina,Sporoschisma chiangraiense,Stigmatomyces chamaemyiae,S.cocksii,S.papei,S.tschirnhausii,S.vikhrevii,Thysanorea uniseptata,Torula breviconidiophora,T.polyseptata,Trochilispora schefflerae and Vaginatispora palmae).Further,twelve new combinations(viz.Cryptoschizotrema cryptotrema,Prolixandromyces australi,P.elongatus,P.falcatus,P.longispinae,P.microveliae,P.neoalardi,P.polhemorum,P.protuberans,P.pseudoveliae,P.tenuistipitis and P.umbonatus),an epitype is chosen for Cantharellus goossensiae,a reference specimen for Acrogenospora sphaerocephala and new synonym Prolixandromyces are designated.Twenty-four new records on new hosts and new geographical distributions are also reported(i.e.Acrostalagmus annulatus,Cantharellus goossensiae,Coprinopsis villosa,Dothiorella plurivora,Dothiorella rhamni,Dothiorella symphoricarposicola,Dictyocheirospora rotunda,Fasciatispora arengae,Grammothele brasiliensis,Lasiodiplodia iraniensis,Lembosia xyliae,Morenoina palmicola,Murispora cicognanii,Neodidymelliopsis farokhinejadii,Neolinocarpon rachidis,Nothophoma quercina,Peroneutypa scoparia,Pestalotiopsis aggestorum,Pilidium concavum,Plagiostoma salicellum,Protofenestella ulmi,Sarocladium kiliense,Tetraploa nagasakiensis and Vaginatispora armatispora).Kevin D.Hyde Danushka S.Tennakoon Rajesh Jeewon DJayarama Bhat Sajeewa S.N.Maharachchikumbura Walter Rossi Marco Leonardi Hyang Burm Lee Hye Yeon Mun Jos Houbraken Thuong T.T.Nguyen Sun Jeong Jeon Jens Christian Frisvad Dhanushka N.Wanasinghe Robert Lucking Andre Aptroot Marcela E.S.Caceres Samantha C.Karunarathna Sinang Hongsanan Rungtiwa Phookamsak Nimali Ide Silva Kasun M.Thambugala Ruvishika S.Jayawardena Indunil C.Senanayake Saranyaphat Boonmee Jie Chen Zong-Long Luo Chayanard Phukhamsakda Olinto L.Pereira Vanessa P.Abreu Andre Wilson Campos Rosado Buyck Bart Emile Randrianjohany Vale rie Hofstetter Tatiana B.Gibertoni Adriene Mayrada Silva Soares Helio Longoni Plautz Jr Helen Maria Pontes Sotao William Kalhy Silva Xavier Jadson Diogo Pereira Bezerra Thays Gabrielle Linsde Oliveira Cristina Mariade Souza-Motta Oliane Maria Correia Magalhaes Digvijayini Bundhun Dulanjalee Harishchandra Ishara S.Manawasinghe Wei Dong Sheng-Nan Zhang Dan-Feng Bao Milan C.Samarakoon Dhandevi Pem Anuruddha Karunarathna Chuan-Gen Lin Jing Yang Rekhani H.Perera Vinit Kumar Shi-Ke Huang Monika C.Dayarathne Anusha H.Ekanayaka Subashini C.Jayasiri Yuanpin Xiao Sirinapa Konta Tuula Niskanen Kare Liimatainen Yu-Cheng Dai Xiao-Hong Ji Xue-Mei Tian Armin Mesic Sanjay K.Singh Kunthida Phutthacharoen Lei Cai Touny Sorvongxay Vinodhini Thiyagaraja Chada Norphanphoun Napalai Chaiwan Yong-Zhong Lu Hong-Bo Jiang Jin-Feng Zhang Pranami D.Abeywickrama Janith V.S.Aluthmuhandiram Rashika S.Brahmanage Ming Zeng Thilini Chethana Deping Wei Martina Reblova Jacques Fournier Jana Nekvindova Renan do Nascimento Barbosa Jose Ewerton Felintodos Santos Neiva Tintide Oliveira Guo-Jie Li Damien Ertz Qiu-Ju Shang Alan J.L.Phillips Chang-Hsin Kuo Erio Camporesi Timur S.Bulgakov Saisamorn Lumyong E.B.Gareth Jones Putarak Chomnunti Eleni Gentekaki Frank Bungartz Xiang-Yu Zeng Sally Fryar Zdenko Tkalcec Junmin Liang Guangshuo Li Ting-Chi Wen Paras Nath Singh Yusufjon Gafforov Itthayakorn Promputtha Erandi Yasanthika Ishani D.Goonasekara Rui-Lin Zhao Qi Zhao Paul M.Kirk Jian-KuiLiu JiYe Yan Peter E.Mortimer Jianchu Xu Mingkwan Doilom 2019Fungal Diversity2019,,3:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费