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Items: 1 to 20 of 22

1.

PAS domain-containing protein

The PAS fold corresponds to the structural domain that has previously been defined as PAS and PAC motifs [4]. The PAS fold appears in archaea, eubacteria and eukarya. This domain is associated to signalling systems and works as a signal sensor domain. It recognises differently substituted aromatic hydrocarbons, oxygen, different dodecanoic acids, autoinducers, 3,5-dimethyl-pyrazin-2-ol and N-alanyl-aminoacetone (Matilla et. al., FEMS Microbiology Reviews, fuab043, 45, 2021, 1. https://doi.org/10.1093/femsre/fuab043). [1]. 9301332. PAS domain S-boxes in archaea, bacteria and sensors for oxygen and redox. Zhulin IB, Taylor BL, Dixon R;. Trends Biochem Sci 1997;22:331-333. [2]. 7756254. 1.4 A structure of photoactive yellow protein, a cytosolic photoreceptor: unusual fold, active site, and chromophore. Borgstahl GE, Williams DR, Getzoff ED;. Biochemistry 1995;34:6278-6287. [3]. 9382818. PAS: a multifunctional domain family comes to light. Ponting CP, Aravind L;. Curr Biol 1997;7:674-677. [4]. 15009198. The PAS fold: a redefination of the PAS domain based upon structural prediction. Hefti MH, Francoijs KJ, de Vries SC, Dixon R, Vervoort J;. Eur J Biochem 2004;271:1198-1208. (from Pfam)

Date:
2024-10-16
Family Accession:
NF020037.5
Method:
HMM
2.

PAS domain-containing protein

The PAS fold corresponds to the structural domain that has previously been defined as PAS and PAC motifs [4]. The PAS fold appears in archaea, eubacteria and eukarya. [1]. 9301332. PAS domain S-boxes in archaea, bacteria and sensors for oxygen and redox. Zhulin IB, Taylor BL, Dixon R;. Trends Biochem Sci 1997;22:331-333. [2]. 7756254. 1.4 A structure of photoactive yellow protein, a cytosolic photoreceptor: unusual fold, active site, and chromophore. Borgstahl GE, Williams DR, Getzoff ED;. Biochemistry 1995;34:6278-6287. [3]. 9382818. PAS: a multifunctional domain family comes to light. Ponting CP, Aravind L;. Curr Biol 1997;7:674-677. [4]. 15009198. The PAS fold: a redefination of the PAS domain based upon structural prediction. Hefti MH, Francoijs KJ, de Vries SC, Dixon R, Vervoort J;. Eur J Biochem 2004;271:1198-1208. (from Pfam)

GO Terms:
Molecular Function:
protein binding (GO:0005515)
Date:
2024-10-16
Family Accession:
NF020036.5
Method:
HMM
3.

MHYT domain-containing protein

Found as an N terminal triplet tandem repeat in bacterial signalling proteins. Family includes CoxC (Swiss:Q9KX27) and CoxH (Swiss:Q9KX23) from P.carboxydovorans. Each repeat contains two transmembrane helices. Domain is also described as the MHYT domain [1]. [1]. 11728710. MHYT, a new integral membrane sensor domain. Galperin MY, Gaidenko TA, Mulkidjanian AY, Nakano M, Price CW;. FEMS Microbiol Lett 2001;205:17-23. (from Pfam)

Date:
2024-10-16
Family Accession:
NF015652.5
Method:
HMM
4.

ATP-binding protein

This family represents the structurally related ATPase domains of histidine kinase, DNA gyrase B and HSP90. [1]. 18361456. Crystal structure of a novel non-Pfam protein AF1514 from Archeoglobus fulgidus DSM 4304 solved by S-SAD using a Cr X-ray source. Li Y, Bahti P, Shaw N, Song G, Chen S, Zhang X, Zhang M, Cheng C, Yin J, Zhu JY, Zhang H, Che D, Xu H, Abbas A, Wang BC, Liu ZJ;. Proteins 2008;71:2109-13. (from Pfam)

Date:
2024-10-16
Family Accession:
NF014567.5
Method:
HMM
5.

histidine kinase dimerization/phospho-acceptor domain-containing protein

Dimerisation and phospho-acceptor domain of histidine kinases. [1]. 9989504. Structure of CheA, a signal-transducing histidine kinase. Bilwes AM, Alex LA, Crane BR, Simon MI;. Cell 1999;96:131-141. [2]. 18361456. Crystal structure of a novel non-Pfam protein AF1514 from Archeoglobus fulgidus DSM 4304 solved by S-SAD using a Cr X-ray source. Li Y, Bahti P, Shaw N, Song G, Chen S, Zhang X, Zhang M, Cheng C, Yin J, Zhu JY, Zhang H, Che D, Xu H, Abbas A, Wang BC, Liu ZJ;. Proteins 2008;71:2109-13. (from Pfam)

GO Terms:
Molecular Function:
phosphorelay sensor kinase activity (GO:0000155)
Biological Process:
signal transduction (GO:0007165)
Date:
2024-10-16
Family Accession:
NF012722.5
Method:
HMM
6.

PAS domain-containing protein

The PAS fold corresponds to the structural domain that has previously been defined as PAS and PAC motifs [4]. The PAS fold appears in archaea, eubacteria and eukarya. This domain can bind gases (O2, CO and NO), FAD, 4-hydroxycinnamic acid and NAD+ (Matilla et.al., FEMS Microbiology Reviews, fuab043, 45, 2021, 1. https://doi.org/10.1093/femsre/fuab043). [1]. 9301332. PAS domain S-boxes in archaea, bacteria and sensors for oxygen and redox. Zhulin IB, Taylor BL, Dixon R;. Trends Biochem Sci 1997;22:331-333. [2]. 7756254. 1.4 A structure of photoactive yellow protein, a cytosolic photoreceptor: unusual fold, active site, and chromophore. Borgstahl GE, Williams DR, Getzoff ED;. Biochemistry 1995;34:6278-6287. [3]. 9382818. PAS: a multifunctional domain family comes to light. Ponting CP, Aravind L;. Curr Biol 1997;7:674-677. [4]. 15009198. The PAS fold: a redefination of the PAS domain based upon structural prediction. Hefti MH, Francoijs KJ, de Vries SC, Dixon R, Vervoort J;. Eur J Biochem 2004;271:1198-1208. (from Pfam)

GO Terms:
Biological Process:
regulation of DNA-templated transcription (GO:0006355)
Date:
2024-10-16
Family Accession:
NF013179.5
Method:
HMM
7.

response regulator

This domain receives the signal from the sensor partner in bacterial two-component systems. It is usually found N-terminal to a DNA binding effector domain. [1]. 7699720. Response regulators of bacterial signal transduction systems: selective domain shuffling during evolution. Pao GM, Saier MH;. J Mol Evol 1995;40:136-154. (from Pfam)

GO Terms:
Biological Process:
phosphorelay signal transduction system (GO:0000160)
Date:
2024-10-16
Family Accession:
NF012301.5
Method:
HMM
8.
new record, indexing in progress
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new record, indexing in progress
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new record, indexing in progress
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