mStayGold (E138D)

CDS coding

Feature Information

Product
bright and highly photostable monomeric green fluorescent protein (Ivorra-Molla et al., 2023)
Note
contains the monomerizing E138D mutation
Type
CDS
Category
coding

Protein Sequence

217 amino acids
MASTPFKFQLKGTINGKSFTVEGEGEGNSHEGSHKGKYVCTSGKLPMSWAALGTSFGYGMKYYTKYPSGLKNWFHEVMPEGFTYDRHIQYKGDGSIHAKHQHFMKNGTYHNIVEFTGQDFKENSPVLTGDMNVSLPNDVQHIPRDDGVECPVTLLYPLLSDKSKCVEAHQNTICKPLHNQPAPDVPYHWIRKQYTQSKDDTEERDHICQSETLEAHL

Found in 3 Plasmids

Plasmid Species Position Strand
pET-MCN-10His-mStayGold (E138D) 211361 Synthetic 2321..2972 Rev
pDRF1 StayGold-E138D-T2A-mCherry 219833 Synthetic 830..1481 Fwd
pDRF1 yStayGold-T2A-mCherry 219839 Synthetic 848..1499 Fwd

DNA Sequence Variants

Sequence context may differ across plasmids due to position and neighboring features.

DNA Sequence (651 bp)
ATGGCCAGCACGCCGTTTAAGTTCCAGTTAAAGGGGACAATTAACGGGAAAAGCTTTACAGTCGAGGGTGAAGGGGAAGGGAACTCGCATGAAGGTAGTCATAAAGGTAAGTATGTGTGTACGAGCGGAAAGTTGCCGATGTCTTGGGCGGCTCTTGGTACTTCGTTTGGGTACGGAATGAAATACTATACAAAATACCCGTCGGGCCTGAAAAATTGGTTCCATGAGGTGATGCCCGAGGGGTTCACGTATGATCGCCACATCCAGTACAAAGGTGATGGCTCAATCCACGCAAAGCACCAACACTTCATGAAGAATGGGACTTATCATAACATTGTCGAGTTTACTGGCCAGGACTTCAAGGAAAACAGCCCCGTATTGACAGGTGACATGAATGTGAGCTTGCCGAACGATGTGCAGCATATTCCACGTGACGACGGAGTTGAATGTCCCGTCACATTGTTATACCCCTTGCTTAGCGATAAATCAAAGTGTGTCGAAGCACATCAAAACACTATCTGCAAACCTCTTCATAACCAACCTGCGCCAGATGTACCGTACCATTGGATTCGCAAACAATATACACAGTCTAAGGATGATACGGAGGAACGCGATCATATCTGTCAGTCCGAGACGTTAGAAGCTCATCTT
Protein Sequence (217 aa)
MASTPFKFQLKGTINGKSFTVEGEGEGNSHEGSHKGKYVCTSGKLPMSWAALGTSFGYGMKYYTKYPSGLKNWFHEVMPEGFTYDRHIQYKGDGSIHAKHQHFMKNGTYHNIVEFTGQDFKENSPVLTGDMNVSLPNDVQHIPRDDGVECPVTLLYPLLSDKSKCVEAHQNTICKPLHNQPAPDVPYHWIRKQYTQSKDDTEERDHICQSETLEAHL
DNA Sequence (651 bp)
ATGGCCAGCACGCCGTTTAAGTTCCAGTTAAAGGGGACAATTAACGGGAAAAGCTTTACAGTCGAGGGTGAAGGGGAAGGGAACTCGCATGAAGGTAGTCATAAAGGTAAGTATGTGTGTACGAGCGGAAAGTTGCCGATGTCTTGGGCGGCTCTTGGTACTTCGTTTGGGTACGGAATGAAATACTATACAAAATACCCGTCGGGCCTGAAAAATTGGTTCCATGAGGTGATGCCCGAGGGGTTCACGTATGATCGCCACATCCAGTACAAAGGTGATGGCTCAATCCACGCAAAGCACCAACACTTCATGAAGAATGGGACTTATCATAACATTGTCGAGTTTACTGGCCAGGACTTCAAGGAAAACAGCCCCGTATTGACAGGTGACATGAATGTGAGCTTGCCGAACGACGTGCAGCATATTCCACGTGACGACGGAGTTGAATGTCCCGTCACATTGTTATACCCCTTGCTTAGCGATAAATCAAAGTGTGTCGAAGCACATCAAAACACTATCTGCAAACCTCTTCATAACCAACCTGCGCCAGATGTACCGTACCATTGGATTCGCAAACAATATACACAGTCTAAGGATGATACGGAGGAACGCGATCATATCTGTCAGTCCGAGACGTTAGAAGCTCATCTT
Protein Sequence (217 aa)
MASTPFKFQLKGTINGKSFTVEGEGEGNSHEGSHKGKYVCTSGKLPMSWAALGTSFGYGMKYYTKYPSGLKNWFHEVMPEGFTYDRHIQYKGDGSIHAKHQHFMKNGTYHNIVEFTGQDFKENSPVLTGDMNVSLPNDVQHIPRDDGVECPVTLLYPLLSDKSKCVEAHQNTICKPLHNQPAPDVPYHWIRKQYTQSKDDTEERDHICQSETLEAHL
DNA Sequence (651 bp)
ATGGCTTCTACTCCATTCAAGTTCCAATTGAAGGGTACTATTAACGGTAAGTCTTTCACTGTTGAAGGTGAAGGTGAAGGTAACTCTCATGAAGGTTCTCATAAGGGTAAGTATGTTTGTACTTCTGGTAAGTTGCCAATGTCTTGGGCTGCTTTGGGTACCTCTTTCGGTTACGGTATGAAGTACTACACTAAGTATCCATCTGGTTTAAAGAACTGGTTCCATGAAGTTATGCCAGAAGGTTTCACTTACGATAGACATATTCAATACAAGGGTGATGGTTCTATTCATGCTAAGCATCAACATTTCATGAAGAACGGTACTTACCATAACATTGTTGAATTCACTGGTCAAGATTTTAAGGAAAACTCTCCAGTTTTGACTGGTGATATGAATGTTTCTTTGCCAAACGATGTTCAACATATTCCAAGAGATGATGGTGTTGAATGTCCAGTTACTTTGTTGTACCCATTGTTGTCTGATAAGTCTAAGTGTGTTGAAGCTCATCAAAACACTATTTGTAAGCCATTGCATAACCAACCAGCTCCAGATGTTCCATATCATTGGATTAGAAAGCAATACACTCAATCTAAGGATGATACTGAAGAAAGAGATCATATTTGTCAATCTGAAACTTTGGAAGCTCATTTG
Protein Sequence (217 aa)
MASTPFKFQLKGTINGKSFTVEGEGEGNSHEGSHKGKYVCTSGKLPMSWAALGTSFGYGMKYYTKYPSGLKNWFHEVMPEGFTYDRHIQYKGDGSIHAKHQHFMKNGTYHNIVEFTGQDFKENSPVLTGDMNVSLPNDVQHIPRDDGVECPVTLLYPLLSDKSKCVEAHQNTICKPLHNQPAPDVPYHWIRKQYTQSKDDTEERDHICQSETLEAHL