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

Multiscale temporal tuning of force generation complex machinery governs cortical microtubule interactions during the first mitotic division in C. elegans

线虫第一次有丝分裂过程中,多尺度时间调控力生成复杂机制控制着皮层微管相互作用

Edwards, G Alan; Linehan, John B; Maddox, Amy Shaub; Maddox, Paul S

Lessons on the force-form-function connection in cell biology from modeling a syncytial germline

从合胞体生殖系建模中汲取细胞生物学中力-形态-功能联系的教训

Linehan, John B; Werner, Michael E; Maddox, Amy Shaub

Mechanical and biochemical feedback combine to generate complex contractile oscillations in cytokinesis

机械反馈和生化反馈共同作用,在胞质分裂过程中产生复杂的收缩振荡。

Werner, Michael E; Ray, Dylan D; Breen, Coleman; Staddon, Michael F; Jug, Florian; Banerjee, Shiladitya; Maddox, Amy Shaub

Model-based trajectory classification of anchored molecular motor-biopolymer interactions.

基于模型的锚定分子马达-生物聚合物相互作用轨迹分类

Linehan John B, Edwards Gerald Alan, Boudreau Vincent, Maddox Amy Shaub, Maddox Paul S

Caenorhabditis elegans septins contribute to the development and structure of the oogenic germline

秀丽隐杆线虫的隔蛋白有助于卵子发生生殖细胞系的发育和结构形成。

Perry, Jenna A; Werner, Michael E; Rivenbark, Larry; Maddox, Amy Shaub

Mechanical positive feedback and biochemical negative feedback combine to generate complex contractile oscillations in cytokinesis

机械正反馈和生化负反馈共同作用,在胞质分裂过程中产生复杂的收缩振荡。

Werner, Michael E; Ray, Dylan D; Breen, Coleman; Staddon, Michael F; Jug, Florian; Banerjee, Shiladitya; Maddox, Amy Shaub

Septins and a formin have distinct functions in anaphase chiral cortical rotation in the Caenorhabditis elegans zygote

在秀丽隐杆线虫合子中,隔蛋白和一种形成蛋白在后期手性皮层旋转中具有不同的功能。

Zaatri, Adhham; Perry, Jenna A; Maddox, Amy Shaub

Novel cytokinetic ring components drive negative feedback in cortical contractility

新型细胞分裂环成分驱动皮层收缩力的负反馈

Bell, Kathryn Rehain; Werner, Michael E; Doshi, Anusha; Cortes, Daniel B; Sattler, Adam; Vuong-Brender, Thanh; Labouesse, Michel; Maddox, Amy Shaub

Uncovering the secret life of Rho GTPases

揭开Rho GTP酶的秘密生活

Perry, Jenna A; Maddox, Amy Shaub

Spherical spindle shape promotes perpendicular cortical orientation by preventing isometric cortical pulling on both spindle poles during C. elegans female meiosis

球形纺锤体形状通过防止秀丽隐杆线虫雌性减数分裂过程中纺锤体两极受到等距皮层牵拉,从而促进皮层垂直取向。

Vargas, Elizabeth; McNally, Karen P; Cortes, Daniel B; Panzica, Michelle T; Danlasky, Brennan M; Li, Qianyan; Maddox, Amy Shaub; McNally, Francis J