Javascript must be enabled to continue!
Analysis of the lethal interaction between the prune and Killer of prune mutations of Drosophila.
View through CrossRef
The third-chromosome mutation Killer of prune (K-pn) causes no phenotype by itself, but causes lethality in individuals homozygous for the nonlethal X-chromosome mutation prune (pn). We have recovered 12 gamma-ray-induced revertants of Killer of prune. All of the revertants fail to complement a recessive cell lethal mutation in the abnormal wing discs (awd) gene. We present evidence that Killer of prune is a mutation in the awd gene. First, revertant awdKR14 leads to reduced accumulation of the awd gene product, but does not affect flanking genes. Second, when a copy of the awd gene is cloned from Killer of prune homozygous flies and injected into embryos, transformants express the lethal interaction with prune. In individuals of the genotype pn; awdK-pn/awd+ the awd mRNA is present at normal levels but the awd polypeptide fails to accumulate. The absence of the awd gene product in such individuals is the cause of death. Although the awd polypeptide is a subunit of a cytoplasmic protein, its sequence is similar to subunit V of yeast cytochrome oxidase.
Cold Spring Harbor Laboratory
Title: Analysis of the lethal interaction between the prune and Killer of prune mutations of Drosophila.
Description:
The third-chromosome mutation Killer of prune (K-pn) causes no phenotype by itself, but causes lethality in individuals homozygous for the nonlethal X-chromosome mutation prune (pn).
We have recovered 12 gamma-ray-induced revertants of Killer of prune.
All of the revertants fail to complement a recessive cell lethal mutation in the abnormal wing discs (awd) gene.
We present evidence that Killer of prune is a mutation in the awd gene.
First, revertant awdKR14 leads to reduced accumulation of the awd gene product, but does not affect flanking genes.
Second, when a copy of the awd gene is cloned from Killer of prune homozygous flies and injected into embryos, transformants express the lethal interaction with prune.
In individuals of the genotype pn; awdK-pn/awd+ the awd mRNA is present at normal levels but the awd polypeptide fails to accumulate.
The absence of the awd gene product in such individuals is the cause of death.
Although the awd polypeptide is a subunit of a cytoplasmic protein, its sequence is similar to subunit V of yeast cytochrome oxidase.
Related Results
Germline Transformation Using a prune cDNA Rescues prune/Killer of prune Lethality and the prune Eye Color Phenotype in Drosophila
Germline Transformation Using a prune cDNA Rescues prune/Killer of prune Lethality and the prune Eye Color Phenotype in Drosophila
Null mutations in the prune gene of Drosophila melanogaster result in prune eye color due to reductions in red pigment accumulation. When one copy of the awdKiller of prune mutant ...
Loss-of-Function Mutations in a Glutathione S-Transferase Suppress the prune-Killer of prune Lethal Interaction
Loss-of-Function Mutations in a Glutathione S-Transferase Suppress the prune-Killer of prune Lethal Interaction
Abstract
The prune gene of Drosophila melanogaster is predicted to encode a phosphodiesterase. Null alleles of prune are viable but cause an eye-color phenotype. The...
Identification of novel genes responsible for a pollen killer present in local natural populations ofArabidopsis thaliana
Identification of novel genes responsible for a pollen killer present in local natural populations ofArabidopsis thaliana
AbstractGamete killers are genetic loci that distort segregation in the progeny of hybrids because the killer allele promotes the elimination of the gametes that carry the sensitiv...
Transposable elements contribute substantially to naturally occurring genetic lethality in Drosophila melanogaster
Transposable elements contribute substantially to naturally occurring genetic lethality in Drosophila melanogaster
Recessive lethal mutations are widespread across studied species, with estimates suggesting that each individual carries at least one. Numerous lethal alleles persist in wild popul...
High Resolution Melt Analysis for Rapid and Cost-Effective Screening of TP53 Mutations in Patients with Myeloid Malignancies
High Resolution Melt Analysis for Rapid and Cost-Effective Screening of TP53 Mutations in Patients with Myeloid Malignancies
Abstract
Background
Recent reports have highlighted an adverse impact of TP53 mutations on the prognosis of patients with myeloid malignancies. TP53 m...
Dynamics of Mutations in Patients with ET Treated with Imetelstat
Dynamics of Mutations in Patients with ET Treated with Imetelstat
Abstract
Background: Imetelstat, a first in class specific telomerase inhibitor, induced hematologic responses in all patients (pts) with essential thrombocythemia (...
Transposable elements drive much of naturally occurring genetic lethality in
Drosophila melanogaster
Transposable elements drive much of naturally occurring genetic lethality in
Drosophila melanogaster
Abstract
Recessive lethal mutations are widespread across studied species, with estimates suggesting that each individual carries at least one. N...
Clinical and Biological Implications of CUX1 Mutations in Myeloid Neoplasms
Clinical and Biological Implications of CUX1 Mutations in Myeloid Neoplasms
Abstract
Recurrent somatic mutations of CUX1 are described in myeloid neoplasms. CUX1 is located at chromosome 7q22.1; -7/del(7q) involving CUX1 locus are common abn...

