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CTH

Gene
CTH
Protein
Cystathionine gamma-lyase
Organism
Bos taurus
Length
405 amino acids
Function
Catalyzes the last step in the trans-sulfuration pathway from methionine to cysteine. Has broad substrate specificity. Converts cystathionine to cysteine, ammonia and 2-oxobutanoate. Converts two cysteine molecules to lanthionine and hydrogen sulfide. Can also accept homocysteine as substrate. Specificity depends on the levels of the endogenous substrates. Generates the endogenous signaling molecule hydrogen sulfide (H2S), and so contributes to the regulation of blood pressure. Acts as a cysteine-protein sulfhydrase by mediating sulfhydration of target proteins: sulfhydration consists of converting -SH groups into -SSH on specific cysteine residues of target proteins such as GAPDH, PTPN1 and NF-kappa-B subunit RELA, thereby regulating their function (By similarity).
Similarity
Belongs to the trans-sulfuration enzymes family.
Mass
44.406 kDa
Sequence
MQEKEASPHGFLPRFQHFATQAIHVGQEPEQWTSQAVVPPISLSTTFKQGAPGQHSGFEYSRSGNPTRNCLEKAVAALDGAKYSLAFASGLAATVTITHLLKAGDQIICMDDVYGGTNRYFRQVATEFGLKISFVDCSKPKLLEAAITPETKLVWIETPTNPSLKMIDIEACAHTVHKHGDIILVVDNTFMSAYFQRPLSLGADICMYSATKYMNGYSDVVMGLVSLNSESLHDRLRFLQNSLGAVPSPIDCYLCNRGLKTLQVRMEKHFENGMAVAQFLESNPQVEKVIYPGLPSHPQHELAKRQCTGCPGMVTFYIKGSLQHAETFLQNLKLFTLAESLGGYESLAELPAIMTHASVPKSDREVLGISDTLIRLSVGLEDKQDLLDDLDQALKAANPPNASSN

Gene
CTH
Protein
Cystathionine gamma-lyase
Organism
Homo sapiens
Length
405 amino acids
Function
Catalyzes the last step in the trans-sulfuration pathway from methionine to cysteine. Has broad substrate specificity. Converts cystathionine to cysteine, ammonia and 2-oxobutanoate. Converts two cysteine molecules to lanthionine and hydrogen sulfide. Can also accept homocysteine as substrate. Specificity depends on the levels of the endogenous substrates. Generates the endogenous signaling molecule hydrogen sulfide (H2S), and so contributes to the regulation of blood pressure. Acts as a cysteine-protein sulfhydrase by mediating sulfhydration of target proteins: sulfhydration consists of converting -SH groups into -SSH on specific cysteine residues of target proteins such as GAPDH, PTPN1 and NF-kappa-B subunit RELA, thereby regulating their function.
Similarity
Belongs to the trans-sulfuration enzymes family.
Mass
44.508 kDa
Sequence
MQEKDASSQGFLPHFQHFATQAIHVGQDPEQWTSRAVVPPISLSTTFKQGAPGQHSGFEYSRSGNPTRNCLEKAVAALDGAKYCLAFASGLAATVTITHLLKAGDQIICMDDVYGGTNRYFRQVASEFGLKISFVDCSKIKLLEAAITPETKLVWIETPTNPTQKVIDIEGCAHIVHKHGDIILVVDNTFMSPYFQRPLALGADISMYSATKYMNGHSDVVMGLVSVNCESLHNRLRFLQNSLGAVPSPIDCYLCNRGLKTLHVRMEKHFKNGMAVAQFLESNPWVEKVIYPGLPSHPQHELVKRQCTGCTGMVTFYIKGTLQHAEIFLKNLKLFTLAESLGGFESLAELPAIMTHASVLKNDRDVLGISDTLIRLSVGLEDEEDLLEDLDQALKAAHPPSGSHS

Gene
CTH
Protein
Cystathionine gamma-lyase
Organism
Macaca fascicularis
Length
405 amino acids
Function
Catalyzes the last step in the trans-sulfuration pathway from methionine to cysteine. Has broad substrate specificity. Converts cystathionine to cysteine, ammonia and 2-oxobutanoate. Converts two cysteine molecules to lanthionine and hydrogen sulfide. Can also accept homocysteine as substrate. Specificity depends on the levels of the endogenous substrates. Generates the endogenous signaling molecule hydrogen sulfide (H2S), and so contributes to the regulation of blood pressure. Acts as a cysteine-protein sulfhydrase by mediating sulfhydration of target proteins: sulfhydration consists of converting -SH groups into -SSH on specific cysteine residues of target proteins such as GAPDH, PTPN1 and NF-kappa-B subunit RELA, thereby regulating their function (By similarity).
Similarity
Belongs to the trans-sulfuration enzymes family.
Mass
44.521 kDa
Sequence
MQEKDASSQGFLPHFQHFATQAIHVGQEPEQWTSRAVVPLISLSTTFKQAAPGQHSGFEYSRSGNPTRNCLEKAVAALDGAKYCLAFASGLAATVTITHLLKAGDQIICMDDVYGGTNRYFRQVASEFGLKISFVDCSKIKLLEAAITPETKLVWIETPTNPVLKMIDIEACAHIVHKRGDIILVVDNTFMSPYFQRPLALGADICMCSATKYMNGHSDVVMGLVSVNCERLHNRLRFLQNSLGAVPSPLDCYLCNRGLKTLHVRMEKHFKNGMAVAQFLESNPGVEKVIYPGLPSHPQHELAKRQCTGCTGMITFYIKGTLQHAEIFLKNLKLFTLAESLGGFESLVELPAIMTHASVPKNDRDVLGISDTLIRLSVGLEDEKDLLEDLDQALKAAHPPSGSHD

Gene
CTH
Protein
Cystathionine gamma-lyase
Organism
Sus scrofa
Length
405 amino acids
Function
Catalyzes the last step in the trans-sulfuration pathway from methionine to cysteine. Has broad substrate specificity. Converts cystathionine to cysteine, ammonia and 2-oxobutanoate. Converts two cysteine molecules to lanthionine and hydrogen sulfide. Can also accept homocysteine as substrate. Specificity depends on the levels of the endogenous substrates. Generates the endogenous signaling molecule hydrogen sulfide (H2S), and so contributes to the regulation of blood pressure. Acts as a cysteine-protein sulfhydrase by mediating sulfhydration of target proteins: sulfhydration consists of converting -SH groups into -SSH on specific cysteine residues of target proteins such as GAPDH, PTPN1 and NF-kappa-B subunit RELA, thereby regulating their function (By similarity).
Similarity
Belongs to the trans-sulfuration enzymes family.
Mass
44.49 kDa
Sequence
MQEKDVSSHGFLPRFQHFATQAIHAGQEPEQWASKAVVPPISLSTTFKQEAPGQHSGFEYSRSGNPTXNCLEKAVAVLDGAKYSLAFASGLAATVTITHLLKAGXQIISMDDVYGGTNRYFRQVAAEFGLKISFVDCSKSKLLEAAITPETKLVWIETPTNPILKMIDIEACAQIVHKHGDIILVVDNTFMSAYFQRPLALGADICMYSATKYMNGHSDVVMGLVSLNSETLHSRLRFLQNSLGAVPSPIDCYLCNRGLKTLQVRMEKHFENGMAVAQFLESHPLVEKVIYPGLPSHPQHELAKRQCTGCPGMISFYIKGSLHHAETFLKSLKLFTLAESLGGYESLAELPAIMTHSSVPKSDREVLGIRDTLIRLSVGLEDKQDLMDDLDQALKAAHPTNASHN

Gene
Cth
Protein
Cystathionine gamma-lyase
Organism
Mus musculus
Length
398 amino acids
Function
Catalyzes the last step in the trans-sulfuration pathway from methionine to cysteine. Has broad substrate specificity. Converts cystathionine to cysteine, ammonia and 2-oxobutanoate. Converts two cysteine molecules to lanthionine and hydrogen sulfide. Can also accept homocysteine as substrate. Specificity depends on the levels of the endogenous substrates. Generates the endogenous signaling molecule hydrogen sulfide (H2S), and so contributes to the regulation of blood pressure. Acts as a cysteine-protein sulfhydrase by mediating sulfhydration of target proteins: sulfhydration consists of converting -SH groups into -SSH on specific cysteine residues of target proteins such as GAPDH, PTPN1 and NF-kappa-B subunit RELA, thereby regulating their function.
Similarity
Belongs to the trans-sulfuration enzymes family.
Mass
43.567 kDa
Sequence
MQKDASLSGFLPSFQHFATQAIHVGQEPEQWNSRAVVLPISLATTFKQDFPGQSSGFEYSRSGNPTRNCLEKAVAALDGAKHSLAFASGLAATITITHLLKAGDEIICMDEVYGGTNRYFRRVASEFGLKISFVDCSKTKLLEAAITPQTKLVWIETPTNPTLKLADIGACAQIVHKRGDIILVVDNTFMSAYFQRPLALGADICMCSATKYMNGHSDVVMGLVSVNSDDLNSRLRFLQNSLGAVPSPFDCYLCCRGLKTLQVRMEKHFKNGMAVARFLETNPRVEKVVYPGLPSHPQHELAKRQCSGCPGMVSFYIKGALQHAKAFLKNLKLFTLAESLGGYESLAELPAIMTHASVPEKDRATLGINDTLIRLSVGLEDEQDLLEDLDRALKAAHP

Gene
Cth
Protein
Cystathionine gamma-lyase
Organism
Rattus norvegicus
Length
398 amino acids
Function
Catalyzes the last step in the trans-sulfuration pathway from methionine to cysteine. Has broad substrate specificity. Converts cystathionine to cysteine, ammonia and 2-oxobutanoate. Converts two cysteine molecules to lanthionine and hydrogen sulfide. Can also accept homocysteine as substrate. Specificity depends on the levels of the endogenous substrates. Generates the endogenous signaling molecule hydrogen sulfide (H2S), and so contributes to the regulation of blood pressure. Acts as a cysteine-protein sulfhydrase by mediating sulfhydration of target proteins: sulfhydration consists of converting -SH groups into -SSH on specific cysteine residues of target proteins such as GAPDH, PTPN1 and NF-kappa-B subunit RELA, thereby regulating their function (By similarity).
Similarity
Belongs to the trans-sulfuration enzymes family.
Mass
43.605 kDa
Sequence
MQKDASSSGFLPSFQHFATQAIHVGPEPEQWSSRAVVLPISLATTFKQDSPGQSSGFVYSRSGNPTRNCLEKAVAALDGAKHCLTFARGLAATTTITHLLKAGDEVICMDEVYGGTNRYFRRVASEFGLKISFVDCSKTKLLEAAITPQTKLVWIETPTNPTLKLADIKACAQIVHKHKDIILVVDNTFMSAYFQRPLALGADICMCSATKYMNGHSDVVMGLVSVTSDDLNERLRFLQNSLGAVPSPFDCYLCCRGLKTLQIRMEKHFRNGMAVARFLESNPRVEKVIYPGLPSHPQHELAKRQCTGCPGMVSFYIKGTLQHAQVFLKNIKLFALAESLGGYESLAELPAIMTHASVPEKDRATLGISDTLIRLSVGLEDEKDLLEDLGQALKAAHP