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液-液相分离在细胞信号调控过程中的作用机制 被引量:1
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作者 窦志慧 王玉佩 张红 《中国生物化学与分子生物学报》 CAS CSCD 北大核心 2020年第9期1013-1023,共11页
近年来,液-液相分离(简称相分离)因其独特的功能与组织性,在细胞生物学研究中发展迅速。细胞内部分蛋白质及核酸(多为RNA)等生物大分子通过由多种弱多价相互作用及构象熵共同介导的相变(phase transition)形成无膜细胞器(membraneless o... 近年来,液-液相分离(简称相分离)因其独特的功能与组织性,在细胞生物学研究中发展迅速。细胞内部分蛋白质及核酸(多为RNA)等生物大分子通过由多种弱多价相互作用及构象熵共同介导的相变(phase transition)形成无膜细胞器(membraneless organelles, MLOs)。这些无膜结构具有明显的流体性质,包括其圆形外表、可浸润、滴落和彼此融合,并具有动态的内部成分交换。在体内形成的无膜细胞器,广泛参与到包括细胞膜信号传导、膜结合蛋白质组装、染色质重塑、RNA代谢、突触传递、活跃转录中心形成、有丝分裂结构形成,以及蛋白质病理性转变等多种重要的细胞内信号调控过程。本文从相分离的研究背景,相分离发生的分子机制,正常相分离过程参与的多种细胞生理活动,异常相分离与神经性疾病及癌症发生的关系等方面,阐述了生物大分子的相分离在细胞信号调控过程中的普遍性及重要作用,并对研究相分离的实验技术和常用的相分离数据库进行了介绍。生物大分子相分离行为的发现,为重新理解众多结构及细胞生物学现象提供了全新的角度,生物大分子相分离可能作为一种新的生物学过程,帮助重新认识众多信号通路的调控方式,也有望为相关疾病的治疗提供新的方向。 展开更多
关键词 液-液相分离 多价相互作用 无膜细胞器 信号调控 神经退行性疾病
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Risk assessment of floor water inrush in coal mines based on MFIM-TOPSIS variable weight model 被引量:8
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作者 ZHANG Guan-da XUE Yi-guo +3 位作者 BAI Cheng-hao SU Mao-xin ZHANG Kai TAO Yu-fan 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第8期2360-2374,共15页
Floor water inrush is one of the main types of coal mine water hazards.With the development of deep mining,the prediction and evaluation of floor water inrush is particularly significant.This paper proposes a variable... Floor water inrush is one of the main types of coal mine water hazards.With the development of deep mining,the prediction and evaluation of floor water inrush is particularly significant.This paper proposes a variable weight model,which combines a multi-factor interaction matrix(MFIM)and the technique for order performance by similarity to ideal solution(TOPSIS)to implement the risk assessment of floor water inrush in coal mines.Based on the MFIM,the interaction between seven evaluation indices,including the confined water pressure,water supply condition and aquifer water yield property,floor aquifuge thickness,fault water transmitting ability,fracture development degree,mining depth and thickness and their influence on floor water inrush were considered.After calculating the constant weights,the active degree evaluation was used to assign a variable weight to the indices.The values of the middle layer and final risk level were obtained by TOPSIS.The presented model was successfully applied in the 9901 working face in the Taoyang Mine and four additional coal mines and the results were highly consistent with the engineering situations.Compared with the existing nonlinear evaluation methods,the proposed model had advantages in terms of the weighting,principle explanation,and algorithm structure. 展开更多
关键词 floor water inrush risk assessment multi-factor interaction matrix(MFIM) technique for order performance by similarity to ideal solution(TOPSIS) variable weight
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