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

Temporal control of contact site formation reveals a relationship between mitochondrial division and Num1-mediated mitochondrial tethering

接触位点形成的时间控制揭示了线粒体分裂与 Num1 介导的线粒体束缚之间的关系

Clare S Harper, Jason C Casler, Laura L Lackner

Loss of Num1-mediated cortical dynein anchoring negatively impacts respiratory growth

Num1 介导的皮质动力蛋白锚定的丧失会对呼吸生长产生负面影响

Antoineen J White, Clare S Harper, Erica M Rosario, Jonathan V Dietz, Hannah G Addis, Jennifer L Fox, Oleh Khalimonchuk, Laura L Lackner

Fission and fusion machineries converge at ER contact sites to regulate mitochondrial morphology

裂变和聚变机制在内质网接触点汇聚,以调节线粒体的形态

Robert G Abrisch, Samantha C Gumbin, Brett Taylor Wisniewski, Laura L Lackner, Gia K Voeltz

In vitro and in vivo assays for mitochondrial fission and fusion

线粒体裂变和融合的体外和体内试验

Suzanne Hoppins, Laura L Lackner, Jason E Lee, Jason A Mears

The role of mitochondria in anchoring dynein to the cell cortex extends beyond clustering the anchor protein

线粒体在将动力蛋白锚定到细胞皮层中的作用不仅限于聚集锚蛋白

Heidi L Schmit, Lauren M Kraft, Conor F Lee-Smith, Laura L Lackner

Direct membrane binding and self-interaction contribute to Mmr1 function in mitochondrial inheritance

直接膜结合和自身相互作用有助于 Mmr1 在线粒体遗传中发挥作用

WeiTing Chen, Holly A Ping, Laura L Lackner

Num1 anchors mitochondria to the plasma membrane via two domains with different lipid binding specificities

Num1 通过两个具有不同脂质结合特异性的结构域将线粒体锚定到质膜上

Holly A Ping, Lauren M Kraft, WeiTing Chen, Amy E Nilles, Laura L Lackner

Comparison of small molecule inhibitors of the bacterial cell division protein FtsZ and identification of a reliable cross-species inhibitor

细菌细胞分裂蛋白 FtsZ 的小分子抑制剂比较及可靠的跨物种抑制剂的鉴定

David E Anderson, Michelle B Kim, Jared T Moore, Terrence E O'Brien, Nohemy A Sorto, Charles I Grove, Laura L Lackner, James B Ames, Jared T Shaw

ER tubules mark sites of mitochondrial division

内质网小管标记线粒体分裂的部位

Jonathan R Friedman, Laura L Lackner, Matthew West, Jared R DiBenedetto, Jodi Nunnari, Gia K Voeltz

A mitochondrial-focused genetic interaction map reveals a scaffold-like complex required for inner membrane organization in mitochondria

以线粒体为中心的遗传相互作用图揭示了线粒体内膜组织所需的支架状复合物

Suzanne Hoppins, Sean R Collins, Ann Cassidy-Stone, Eric Hummel, Rachel M Devay, Laura L Lackner, Benedikt Westermann, Maya Schuldiner, Jonathan S Weissman, Jodi Nunnari