Table 2.
Name | Family | Microbial or viral species | Gene number | Physiological role | Regulatory action | Reference |
---|---|---|---|---|---|---|
C68 | AbrB | S. islandicus plasmid–virus pSSVx | ORFC68 | (CRISPR-mediated) virus–host interactionsa | Activationa | (Contursi et al. 2011) |
MerR | ArsR | S. solfataricus | SSO2688 | Mercury resistance | Repression | (Schelert et al. 2006) |
IdeR | DtxR | T. acidophilum | TA0872 | Iron uptake and homeostasis | Repression | (Yeo et al. 2012; Yeo, Park and Lee 2014) |
ArnA | FHA | S. acidocaldarius | Saci_1210 | Motility | Repression | (Duan and He 2011; Reimann et al. 2012) |
S. tokodaii | ST0829 | |||||
YtrA | GntR | S. acidocaldarius | Saci_1851 | Expression of membrane proteins | Repression | (Lemmens et al. 2019b) |
BarR | Lrp | S. acidocaldarius | Saci_2136 | β-Alanine metabolism | Activation | (Liu et al. 2014a) |
S. tokodaii | ST1115 | |||||
Lrp | Lrp | S. acidocaldarius | Saci_1588 | Global regulation of metabolism and physiology | Dual | (Enoru-Eta et al. 2000; Vassart et al. 2013) |
S. solfataricus | SSO0606 | |||||
LysM | Lrp | S. acidocaldarius | Saci_0752 | Amino acid transport and metabolism | Activation | (Brinkman et al. 2002; Song et al. 2013) |
S. solfataricus | SSO0157 | |||||
LrpB | Lrp | S. solfataricus | SSO2131 | Regulation of pyruvate ferredoxin oxidoreductase and permeases | Dual | (Peeters et al. 2009; Peeters, Peixeiro and Sezonov 2013) |
AbfR1 | Lrs14 | S. acidocaldarius | Saci_0446 | Biofilm formation and motility | Dual | (Orell et al. 2013a; Li et al. 2017) |
Sta1 | Lrs14 | S. solfataricus | SSO0048 | Regulation of SIRV1 viral gene expression | Activation | (Kessler et al. 2006) |
Lrs14 | Lrs14 | S. solfataricus | SSO1101 | N.A. | Repression | (Bell and Jackson 2000) |
Csa3a | MarR | S. islandicus | SiRe_0764 | CRISPR spacer acquisition | Activation | (Liu et al. 2015) |
BldR | MarR | S. solfataricus | SSO1352 | Detoxification of aromatic compounds | Activation | (Fiorentino et al. 2007) |
BldR2 | MarR | S. solfataricus | SSO1082 | Stress response to aromatic compounds | N.A. | (Fiorentino et al. 2011) |
N.A. | MarR | S. tokodaii | ST1710 | N.A. | N.A. | (Kumarevel et al. 2009) |
MLPTv | MarR | T. volcanium | BAB59904b | N.A. | N.A. | (Liu, Walton and Rees 2010) |
RbkR | MarRb | T. acidophilum | Ta1064 | Riboflavin biosynthesis | Activationa | (Rodionova et al. 2017) |
M. yellowstonensis | EHP68448.1d | |||||
FadR | TetR | S. acidocaldarius | Saci_1107 | Fatty acid and lipid metabolism | Repression | (Wang et al. 2019c) |
HhcR | TrmB | M. yellowstonensis | H2C8P4d | Autotrophic metabolism | N.A. | (Leyn et al. 2015) |
MalR | TrmB | S. acidocaldarius | Saci_1161 | Maltose transport and metabolism | Activation | (Wagner et al. 2014) |
ArnB | vWA | S. acidocaldarius | Saci_1211 | Motility | Repression | (Reimann et al. 2012) |
XylR | N.A. | S. acidocaldarius | Saci_2116 | Arabinose/xylose transport and metabolism | Activation | (van der Kolk et al. 2020) |
ArnR | N.A. | S. acidocaldarius | Saci_1180 | Motility; type IV pili surface structures | Activation | (Lassak et al. 2013; Bischof, Haurat and Albers 2019) |
ArnR1 | N.A. | S. acidocaldarius | Saci_1171 | Motility; type IV pili surface structures | Activation | (Lassak et al. 2013; Bischof, Haurat and Albers 2019) |
CopR/CopT | N.A. | S. solfataricus | SSO2652 | Copper homeostasis | Repression | (Ettema et al. 2006; Villafane et al. 2009) |
Fur | N.A. | T. volcanium | TVN0292 | Oxidative stress | N.A. | (Minoshima et al. 2014) |
SvtR | N.A.e | S. islandicus rod-shaped virus 1 (SIRV1) | ORF56b | Viral development | Repression | (Guillière et al. 2009) |
RIP | N.A.e | Acidianus two-tailed virus (ATV) | ORF145 | Global regulation of host transcription | Repression | (Sheppard et al. 2016) |
Stf76 | N.A.e | S. islandicus plasmid–virus pSSVx | ORF76 | N.A. | N.A. | (Contursi et al. 2014) |
F55 | N.A.e | Sulfolobus spindle-shaped virus 1 | Tlys | Viral lysogeny and UV induction | Repression | (Fusco et al. 2015) |
N.A. = not applicable (unknown based on published information).
Hypothesized;
UNIPROT number;
Multifunctional protein with enzymatic and transcription regulatory domains;
GenBank accession number;
Viral regulators are often difficult to classify into a family because of a lack of homology.