日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Hypoxia leads to reduced mito-nuclear gene expression and increased mtDNA transcriptional pausing in human cells

缺氧会导致人类细胞中线粒体-核基因表达降低和线粒体DNA转录暂停增加。

Shtolz, Noam; Dadon, Sarah; Mishmar, Dan

Vertebrates show coordinated elevated expression of mitochondrial and nuclear genes after birth

脊椎动物出生后表现出线粒体基因和核基因协同高表达。

Medini, Hadar; Mishmar, Dan

The metazoan landscape of mitochondrial DNA gene order and content is shaped by selection and affects mitochondrial transcription

后生动物线粒体DNA基因顺序和含量的格局受选择作用塑造,并影响线粒体转录。

Shtolz, Noam; Mishmar, Dan

Mutant C. elegans mitofusin leads to selective removal of mtDNA heteroplasmic deletions across generations to maintain fitness

突变型秀丽隐杆线虫线粒体融合蛋白导致线粒体DNA异质性缺失在世代间选择性清除,从而维持适应性。

Meshnik, Lana; Bar-Yaacov, Dan; Kasztan, Dana; Neiger, Tali; Cohen, Tal; Kishner, Mor; Valenci, Itay; Dadon, Sara; Klein, Christopher J; Vance, Jeffery M; Nevo, Yoram; Züchner, Stephan; Ovadia, Ofer; Mishmar, Dan; Ben-Zvi, Anat

Immune system cells from COVID-19 patients display compromised mitochondrial-nuclear expression co-regulation and rewiring toward glycolysis

COVID-19 患者的免疫系统细胞表现出线粒体-核表达协同调控受损以及向糖酵解途径的重编程。

Medini, Hadar; Zirman, Amit; Mishmar, Dan

Two Homogametic Genotypes - One Crayfish: On the Consequences of Intersexuality

两种同配基因型——一只小龙虾:论雌雄同体的后果

Levy, Tom; Ventura, Tomer; De Leo, Giulio; Grinshpan, Nufar; Abu Abayed, Faiza Amterat; Manor, Rivka; Savaya, Amit; Sklarz, Menachem Y; Chalifa-Caspi, Vered; Mishmar, Dan; Sagi, Amir

Disease-causing mutations in subunits of OXPHOS complex I affect certain physical interactions

OXPHOS 复合物 I 亚基的致病突变会影响某些物理相互作用

Gilad Barshad, Nicol Zlotnikov-Poznianski, Lihi Gal, Maya Schuldiner, Dan Mishmar

A common pattern of DNase I footprinting throughout the human mtDNA unveils clues for a chromatin-like organization

人类线粒体DNA中DNase I足迹分析的共同模式揭示了其染色质样结构的线索

Blumberg, Amit; Danko, Charles G; Kundaje, Anshul; Mishmar, Dan

Correction: Mitochondrial 16S rRNA Is Methylated by tRNA Methyltransferase TRMT61B in All Vertebrates

更正:所有脊椎动物的线粒体16S rRNA均由tRNA甲基转移酶TRMT61B甲基化

Bar-Yaacov, Dan; Frumkin, Idan; Yashiro, Yuka; Chujo, Takeshi; Ishigami, Yuma; Chemla, Yonatan; Blumberg, Amit; Schlesinger, Orr; Bieri, Philipp; Greber, Basil; Ban, Nenad; Zarivach, Raz; Alfonta, Lital; Pilpel, Yitzhak; Suzuki, Tsutomu; Mishmar, Dan

Initiation of mtDNA transcription is followed by pausing, and diverges across human cell types and during evolution

线粒体DNA转录起始后会经历一段暂停期,并且在人类不同细胞类型和进化过程中表现出差异。

Blumberg, Amit; Rice, Edward J; Kundaje, Anshul; Danko, Charles G; Mishmar, Dan