SummaryMany cellular processes require large forces that are generated collectively by multiple cytoskeletal motor proteins. Understanding how motors generate force as a team is therefore fundamentally important but is poorly understood. Here, we demonstrate optical trapping at single-molecule resolution inside cells to quantify force generation by motor teams driving single phagosomes. In remarkable paradox, strong kinesins fail to work collectively, whereas weak and detachment-prone dyneins team up to generate large forces that tune linearly in strength and persistence with dynein number. Based on experimental evidence, we propose that leading dyneins in a load-carrying team take short steps, whereas trailing dyneins take larger steps. Dy...
Cytoplasmic dynein is a highly complex motor protein that generates forces toward the minus end of m...
SummaryBackgroundCytoplasmic dynein is the molecular motor responsible for most retrograde microtubu...
Cytoplasmic dynein is a motor protein that walks along microtubules (MTs) and performs mechanical wo...
SummaryMany cellular processes require large forces that are generated collectively by multiple cyto...
Many cellular processes require large forces that are generated collectively by multiple cytoskeleta...
In the living cell, we encounter a large variety of motile processes such as organelle transport and...
Intracellular transport is interspersed with frequent reversals in direction due to the presence of ...
AbstractA new optical trapping study shows that the stepsize of cytoplasmic dynein varies according ...
Cytoskeletal motors play key roles in the organization and division of eukaryotic cells. Although de...
SummaryBackgroundCytoplasmic dynein is the molecular motor responsible for most retrograde microtubu...
Motor proteins take part in the organization and division of eukaryotic cells by using their ability...
Motor proteins, such as dynein, use chemical energy from ATP hydrolysis to move along the cytoskelet...
Motor proteins take part in the organization and division of eukaryotic cells by using their ability...
Motor proteins are essential components of intracellular transport inside eukaryotic cells. These pr...
In the living cell, we encounter a large variety of motile processes such as organelle transport and...
Cytoplasmic dynein is a highly complex motor protein that generates forces toward the minus end of m...
SummaryBackgroundCytoplasmic dynein is the molecular motor responsible for most retrograde microtubu...
Cytoplasmic dynein is a motor protein that walks along microtubules (MTs) and performs mechanical wo...
SummaryMany cellular processes require large forces that are generated collectively by multiple cyto...
Many cellular processes require large forces that are generated collectively by multiple cytoskeleta...
In the living cell, we encounter a large variety of motile processes such as organelle transport and...
Intracellular transport is interspersed with frequent reversals in direction due to the presence of ...
AbstractA new optical trapping study shows that the stepsize of cytoplasmic dynein varies according ...
Cytoskeletal motors play key roles in the organization and division of eukaryotic cells. Although de...
SummaryBackgroundCytoplasmic dynein is the molecular motor responsible for most retrograde microtubu...
Motor proteins take part in the organization and division of eukaryotic cells by using their ability...
Motor proteins, such as dynein, use chemical energy from ATP hydrolysis to move along the cytoskelet...
Motor proteins take part in the organization and division of eukaryotic cells by using their ability...
Motor proteins are essential components of intracellular transport inside eukaryotic cells. These pr...
In the living cell, we encounter a large variety of motile processes such as organelle transport and...
Cytoplasmic dynein is a highly complex motor protein that generates forces toward the minus end of m...
SummaryBackgroundCytoplasmic dynein is the molecular motor responsible for most retrograde microtubu...
Cytoplasmic dynein is a motor protein that walks along microtubules (MTs) and performs mechanical wo...