TY - JOUR
T1 - Author Correction
T2 - A functional selection reveals previously undetected anti-phage defence systems in the E. coli pangenome (Nature Microbiology, (2022), 7, 10, (1568-1579), 10.1038/s41564-022-01219-4)
AU - Vassallo, Christopher N.
AU - Doering, Christopher R.
AU - Littlehale, Megan L.
AU - Teodoro, Gabriella I.C.
AU - Laub, Michael T.
N1 - Publisher Copyright:
© The Author(s) 2024.
PY - 2024/10
Y1 - 2024/10
N2 - Correction to: Nature Microbiologyhttps://doi.org/10.1038/s41564-022-01219-4, published online 19 September 2022 In follow-up studies on the CmdTAC system identified in our paper, we discovered that the wrong toxin clone was used for the spotting assays in Fig. 5f. A corrected version is shown below as Fig. 1. We now find that producing CmdT alone is not highly toxic to cells. However, producing CmdT and CmdA together severely diminishes growth, while co-producing CmdC along with CmdTA largely restores plating viability. These results, along with additional studies of the CmdTAC system1, indicate that CmdA is likely required for the folding or stability of CmdT and that, together, CmdA and CmdC neutralize CmdT activity. The corrected data do not affect our primary conclusion that the CmdTAC system provides E. coli potent defense against T4 infection, nor does it impact any other conclusions in the paper. We apologize for any confusion our error created. To reflect the new findings, the following changes were made to the text. In the fourth paragraph of the “Previously uncharacterized toxin-antitoxin-like systems” section, the text now reading “Inducing the expression of just CmdT, a previously uncharacterized toxin that has an ADP-ribosyltransferase-like domain, was not toxic, but co-expressing CmdT with the presumed antitoxin, CmdA, was toxic to cells. Co-expression of CmdT with both the putative antitoxin and chaperone components largely restored viability (Fig. 5f)” previously read “Inducing the expression of CmdT, a previously uncharacterized toxin that has an ADP-ribosyltransferase-like domain, was toxic with the presumed antitoxin, CmdA, only marginally improved viability. However, co-expression with both the putative antitoxin and chaperone components completely restored viability (Fig. 5f).” In the final paragraph of the same section, the sentence now reading “Toxicity of MqsR…” previously began “Similar to CMdTAC, toxicity of MqsR…”. (Figure presented.) Original and revised Fig. 5f.
AB - Correction to: Nature Microbiologyhttps://doi.org/10.1038/s41564-022-01219-4, published online 19 September 2022 In follow-up studies on the CmdTAC system identified in our paper, we discovered that the wrong toxin clone was used for the spotting assays in Fig. 5f. A corrected version is shown below as Fig. 1. We now find that producing CmdT alone is not highly toxic to cells. However, producing CmdT and CmdA together severely diminishes growth, while co-producing CmdC along with CmdTA largely restores plating viability. These results, along with additional studies of the CmdTAC system1, indicate that CmdA is likely required for the folding or stability of CmdT and that, together, CmdA and CmdC neutralize CmdT activity. The corrected data do not affect our primary conclusion that the CmdTAC system provides E. coli potent defense against T4 infection, nor does it impact any other conclusions in the paper. We apologize for any confusion our error created. To reflect the new findings, the following changes were made to the text. In the fourth paragraph of the “Previously uncharacterized toxin-antitoxin-like systems” section, the text now reading “Inducing the expression of just CmdT, a previously uncharacterized toxin that has an ADP-ribosyltransferase-like domain, was not toxic, but co-expressing CmdT with the presumed antitoxin, CmdA, was toxic to cells. Co-expression of CmdT with both the putative antitoxin and chaperone components largely restored viability (Fig. 5f)” previously read “Inducing the expression of CmdT, a previously uncharacterized toxin that has an ADP-ribosyltransferase-like domain, was toxic with the presumed antitoxin, CmdA, only marginally improved viability. However, co-expression with both the putative antitoxin and chaperone components completely restored viability (Fig. 5f).” In the final paragraph of the same section, the sentence now reading “Toxicity of MqsR…” previously began “Similar to CMdTAC, toxicity of MqsR…”. (Figure presented.) Original and revised Fig. 5f.
UR - https://www.scopus.com/pages/publications/85193612690
U2 - 10.1038/s41564-024-01724-8
DO - 10.1038/s41564-024-01724-8
M3 - Comment/debate
C2 - 38769436
AN - SCOPUS:85193612690
SN - 2058-5276
VL - 9
SP - 2760
EP - 2761
JO - Nature Microbiology
JF - Nature Microbiology
IS - 10
ER -