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Transformations of phosphatidylinositol phosphates in the outer and inner nuclear membrane are linked to synthesis and restitution of cellular membranes 被引量:5
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作者 Amalia Slomiany Bronislaw L. Slomiany 《Health》 2011年第4期187-199,共13页
The ultimate goal in phosphoinositides cellular metabolism is to decipher their global functional organization and coordination of the com- partmentalized signaling processes. In this report we present evidence linkin... The ultimate goal in phosphoinositides cellular metabolism is to decipher their global functional organization and coordination of the com- partmentalized signaling processes. In this report we present evidence linking nuclear phos- phoinositides cycle with endoplasmic reticulum synthesis and function. The rapid transformation of [3H]inositol-labeled phosphoinositides in the intact nuclei (IN) was captured in chase studies for 0-5 min, followed by examination of phosphatidylinositides in the inner nuclear me- mbrane (INM), the outer nuclear membrane (ONM) and endoplasmic reticulum (ER). We revealed that synthesis of phosphatidylinositol phosphates (PIPs) occurs in ONM and the de- phosphorylation takes place in the INM. The rapid transformation of the radiolabeled PIPs in ONM reverberated in their appearance and successive transformation in INM, and in the 5min chased nuclei was tracked to ONM as the re- emerging radiolabeled phosphatidylinositol (PI). These chase-uncovered changes in ONM and INM PIPs profiles allow us to conclude that the observed conversions in the nuclear membrane continuum are induced by the lateral movement of the membrane and its transit from the cytosolic to nuclear and back to cytosolic environment. The suggested membrane synthesisinduced movement provides the means to transport the membrane- and the membrane lipid ligand-associated cytosolic proteins to the intranuclear spaces and renewal of INM. Export of the nuclear components interacting with the modified INM, by exiting from nuclear to cytosolic site, endows ER with a steady influx of the membrane that is conditioned to generate vesicles according to the nucleus delivered templates. 展开更多
关键词 Phosphatidylinositides PIPs Transformation RESTITUTION Outer nuclear membrane inner nuclear membrane Endoplasmic Reticulum CELLULAR membranes
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内核膜相关的蛋白质降解(INMAD)的研究进展
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作者 张雨恬 臧奕 《中国细胞生物学学报》 CAS CSCD 2020年第8期1413-1419,共7页
在真核生物中,核膜由双层磷脂分子层组成,这是真核生物区别于原核生物的一大特征。外核膜与内质网相连,内核膜上则有许多特异的蛋白,核孔复合体横跨分隔着内外核膜。内核膜相关的蛋白质降解(INMAD),主要通过泛素蛋白酶体途径,介导错误... 在真核生物中,核膜由双层磷脂分子层组成,这是真核生物区别于原核生物的一大特征。外核膜与内质网相连,内核膜上则有许多特异的蛋白,核孔复合体横跨分隔着内外核膜。内核膜相关的蛋白质降解(INMAD),主要通过泛素蛋白酶体途径,介导错误折叠或错误定位到核内的蛋白的降解,或调控核膜蛋白的分布,是近年来发现的核内蛋白质量控制新领域。INMAD与内质网相关的蛋白质降解(ERAD)有许多相同之处,ERAD的研究较多,但INMAD的机制仍有很多空白。该文总结了三种泛素连接酶介导的INMAD:Asi1/3、Doa10、APC/C。三者在经典底物、底物识别和泛素化降解过程有所不同。同时该文讨论了INMAD在维持内核膜平衡中的作用,随着INMAD研究的不断深入,可能为内核膜相关疾病的发现与修复提供策略。 展开更多
关键词 核膜 内核膜 内核膜相关的蛋白质降解 泛素蛋白酶体 泛素连接酶 芽殖酵母
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杆状病毒编码的内核膜分选模序研究进展
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作者 朱士茂 李慧 郭采平 《微生物学报》 CAS CSCD 北大核心 2015年第5期537-542,共6页
杆状病毒(Baculovirus)是一类在自然界中专一性感染节肢动物的病原微生物,其宿主主要为鳞翅目、双翅目及膜翅目昆虫。杆状病毒感染其宿主细胞时产生多种整合膜蛋白,通过细胞连续膜系统,从内质网、外核膜到内核膜,并最终定位到病毒粒子... 杆状病毒(Baculovirus)是一类在自然界中专一性感染节肢动物的病原微生物,其宿主主要为鳞翅目、双翅目及膜翅目昆虫。杆状病毒感染其宿主细胞时产生多种整合膜蛋白,通过细胞连续膜系统,从内质网、外核膜到内核膜,并最终定位到病毒粒子囊膜上。杆状病毒编码的内核膜分选模序作为一种蛋白分选信号序列,在此过程中发挥关键作用。本文对杆状病毒编码的内核膜分选模序研究进展进行综述,包括其作为一种新型蛋白定位信号的分子作用机理和分选作用模型,以及与杆状病毒经口感染之间的关系。这些研究不仅在分子水平上丰富和补充了人们对蛋白分选机制的认识,而且对于杆状病毒分子生物学研究和应用具有重要的推动意义。 展开更多
关键词 杆状病毒 内核膜分选模序 蛋白分选 经口感染
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