Person: Calarco, John A
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Publication Heritable genome editing in C. elegans via a CRISPR-Cas9 system
(2013) Friedland, Ari E.; Tzur, Yonatan B; Esvelt, Kevin Michael; Colaiacovo, Monica; Church, George; Calarco, John ACRISPR-Cas systems have been used with single-guide RNAs for accurate gene disruption and conversion in multiple biological systems. Here we report the use of the endonuclease Cas9 to target genomic sequences in the C. elegans germline, utilizing single-guide RNAs that are expressed from a U6 small nuclear RNA promoter. Our results demonstrate that targeted, heritable genetic alterations can be achieved in C. elegans, providing a convenient and effective approach for generating loss-of-function mutants.
Publication Neuroendocrine modulation sustains the C. elegans forward motor state
(eLife Sciences Publications, Ltd, 2016) Lim, Maria A; Chitturi, Jyothsna; Laskova, Valeriya; Meng, Jun; Findeis, Daniel; Wiekenberg, Anne; Mulcahy, Ben; Luo, Linjiao; Li, Yan; Lu, Yangning; Hung, Wesley; Qu, Yixin; Ho, Chi-Yip; Holmyard, Douglas; Ji, Ni; McWhirter, Rebecca; Samuel, Aravi; Miller, David M; Schnabel, Ralf; Calarco, John A; Zhen, MeiNeuromodulators shape neural circuit dynamics. Combining electron microscopy, genetics, transcriptome profiling, calcium imaging, and optogenetics, we discovered a peptidergic neuron that modulates C. elegans motor circuit dynamics. The Six/SO-family homeobox transcription factor UNC-39 governs lineage-specific neurogenesis to give rise to a neuron RID. RID bears the anatomic hallmarks of a specialized endocrine neuron: it harbors near-exclusive dense core vesicles that cluster periodically along the axon, and expresses multiple neuropeptides, including the FMRF-amide-related FLP-14. RID activity increases during forward movement. Ablating RID reduces the sustainability of forward movement, a phenotype partially recapitulated by removing FLP-14. Optogenetic depolarization of RID prolongs forward movement, an effect reduced in the absence of FLP-14. Together, these results establish the role of a neuroendocrine cell RID in sustaining a specific behavioral state in C. elegans. DOI: http://dx.doi.org/10.7554/eLife.19887.001
Publication Serotonin-dependent kinetics of feeding bursts underlie a graded response to food availability in C. elegans
(Nature Publishing Group, 2017) Lee, Kyung Suk; Iwanir, Shachar; Kopito, Ronen B.; Scholz, Monika; Calarco, John A; Biron, David; Levine, ErelAnimals integrate physiological and environmental signals to modulate their food uptake. The nematode C. elegans, whose food uptake consists of pumping bacteria from the environment into the gut, provides excellent opportunities for discovering principles of conserved regulatory mechanisms. Here we show that worms implement a graded feeding response to the concentration of environmental bacteria by modulating a commitment to bursts of fast pumping. Using long-term, high-resolution, longitudinal recordings of feeding dynamics under defined conditions, we find that the frequency and duration of pumping bursts increase and the duration of long pauses diminishes in environments richer in bacteria. The bioamine serotonin is required for food-dependent induction of bursts as well as for maintaining their high rate of pumping through two distinct mechanisms. We identify the differential roles of distinct families of serotonin receptors in this process and propose that regulation of bursts is a conserved mechanism of behaviour and motor control.
Publication Efficient Genome Editing in Caenorhabditis elegans with a Toolkit of Dual-Marker Selection Cassettes
(Genetics Society of America, 2015) Norris, Adam D.; Kim, Hyun-Min; Colaiacovo, Monica; Calarco, John AUse of the CRISPR/Cas9 RNA-guided endonuclease complex has recently enabled the generation of double-strand breaks virtually anywhere in the C. elegans genome. Here, we present an improved strategy that makes all steps in the genome editing process more efficient. We have created a toolkit of template-mediated repair cassettes that contain an antibiotic resistance gene to select for worms carrying the repair template and a fluorescent visual marker that facilitates identification of bona fide recombinant animals. Homozygous animals can be identified as early as 4–5 days post-injection, and minimal genotyping by PCR is required. We demonstrate that our toolkit of dual-marker vectors can generate targeted disruptions, deletions, and endogenous tagging with fluorescent proteins and epitopes. This strategy should be useful for a wide variety of additional applications and will provide researchers with increased flexibility when designing genome editing experiments.