Javascript must be enabled to continue!
Distinct Responses to Reduplicated Chromosomes Require Distinct Mad2 Responses
View through CrossRef
ABSTRACT
Duplicating chromosomes once each cell cycle produces sister chromatid pairs, which separate accurately at anaphase. In contrast, reduplicating chromosomes without separation frequently produces polytene chromosomes, a barrier to accurate mitosis. Chromosome reduplication occurs in many contexts, including: polytene tissue development, polytene tumors, and following treatment with mitosis-blocking chemotherapeutics. However, mechanisms responding to or resolving polyteny during mitosis are poorly understood. Here, using
Drosophila
, we uncover two distinct reduplicated chromosome responses. First, when reduplicated polytene chromosomes persist into metaphase, an anaphase delay prevents tissue malformation and apoptosis. Second, reduplicated polytene chromosomes can also separate prior to metaphase through a spindlePindependent mechanism termed Separation-Into-Recent-Sisters (SIRS). Both reduplication responses require the spindle assembly checkpoint protein Mad2. While Mad2 delays anaphase separation of metaphase polytene chromosomes, Mad2’s control of overall mitotic timing ensures efficient SIRS. Our results pinpoint mechanisms enabling continued proliferation after genome reduplication, a finding with implications for cancer progression and prevention.
Title: Distinct Responses to Reduplicated Chromosomes Require Distinct Mad2 Responses
Description:
ABSTRACT
Duplicating chromosomes once each cell cycle produces sister chromatid pairs, which separate accurately at anaphase.
In contrast, reduplicating chromosomes without separation frequently produces polytene chromosomes, a barrier to accurate mitosis.
Chromosome reduplication occurs in many contexts, including: polytene tissue development, polytene tumors, and following treatment with mitosis-blocking chemotherapeutics.
However, mechanisms responding to or resolving polyteny during mitosis are poorly understood.
Here, using
Drosophila
, we uncover two distinct reduplicated chromosome responses.
First, when reduplicated polytene chromosomes persist into metaphase, an anaphase delay prevents tissue malformation and apoptosis.
Second, reduplicated polytene chromosomes can also separate prior to metaphase through a spindlePindependent mechanism termed Separation-Into-Recent-Sisters (SIRS).
Both reduplication responses require the spindle assembly checkpoint protein Mad2.
While Mad2 delays anaphase separation of metaphase polytene chromosomes, Mad2’s control of overall mitotic timing ensures efficient SIRS.
Our results pinpoint mechanisms enabling continued proliferation after genome reduplication, a finding with implications for cancer progression and prevention.
Related Results
Distinct responses to reduplicated chromosomes require distinct Mad2 responses
Distinct responses to reduplicated chromosomes require distinct Mad2 responses
Duplicating chromosomes once each cell cycle produces sister chromatid pairs, which separate accurately at anaphase. In contrast, reduplicating chromosomes without separation frequ...
The mitotic checkpoint protein MAD2 delivers monoamine transporters to endocytosis
The mitotic checkpoint protein MAD2 delivers monoamine transporters to endocytosis
ABSTRACT
Monoamine transporters retrieve serotonin (SERT), dopamine (DAT) and norepinephrine (NET) from the synaptic cleft. Surface levels of tra...
Data from p31<sup>comet</sup> Induces Cellular Senescence through p21 Accumulation and Mad2 Disruption
Data from p31<sup>comet</sup> Induces Cellular Senescence through p21 Accumulation and Mad2 Disruption
<div>Abstract<p>Functional suppression of spindle checkpoint protein activity results in apoptotic cell death arising from mitotic failure, including defective spindle ...
Data from p31<sup>comet</sup> Induces Cellular Senescence through p21 Accumulation and Mad2 Disruption
Data from p31<sup>comet</sup> Induces Cellular Senescence through p21 Accumulation and Mad2 Disruption
<div>Abstract<p>Functional suppression of spindle checkpoint protein activity results in apoptotic cell death arising from mitotic failure, including defective spindle ...
MAD2-overexpressing interphase cell death (MOID)
MAD2-overexpressing interphase cell death (MOID)
Abstract
An in-depth comprehension of the molecular mechanisms behind the targeted eradication of cancer cells through cell death represents a requisite for effective antic...
The cell cycle protein MAD2 facilitates endocytosis of the serotonin transporter in the neuronal soma
The cell cycle protein MAD2 facilitates endocytosis of the serotonin transporter in the neuronal soma
Abstract
Monoamine transporters retrieve serotonin (SERT), dopamine (DAT), and norepinephrine (NET) from the synaptic cleft. Transporter inte...
Childhood Hyperdiploid Acute Lymphoblastic Leukemia
Childhood Hyperdiploid Acute Lymphoblastic Leukemia
Abstract
Background:
Acute lymphoblastic leukemias (ALL) with 51-67 chromosomes in leukemic cells are defined as high-hyperdiploid (HHD). In childhood...
Distribution and Characterization of Heterochromatic DNA in the Tetraploid African Population Alfalfa Genome
Distribution and Characterization of Heterochromatic DNA in the Tetraploid African Population Alfalfa Genome
A reference karyotype of tetraploid alfalfa (Medicago sativa subsp. sativa, ) African Population germplasm source (PI 536539) was constructed using the combined techniques of C‐ban...

