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UniProtKB/Swiss-Prot variant pages

UniProtKB/Swiss-Prot Q01082: Variant p.Thr59Ile

Spectrin beta chain, non-erythrocytic 1
Gene: SPTBN1
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Variant information Variant position: help 59 The position of the amino-acid change on the UniProtKB canonical protein sequence.
Type of variant: help LP/P [Disclaimer] The variants are classified into three categories: LP/P, LB/B and US.
  • LP/P: likely pathogenic or pathogenic.
  • LB/B: likely benign or benign.
  • US: uncertain significance

Residue change: help From Threonine (T) to Isoleucine (I) at position 59 (T59I, p.Thr59Ile). Indicates the amino acid change of the variant. The one-letter and three-letter codes for amino acids used in UniProtKB/Swiss-Prot are those adopted by the commission on Biochemical Nomenclature of the IUPAC-IUB.
Physico-chemical properties: help Change from medium size and polar (T) to medium size and hydrophobic (I) The physico-chemical property of the reference and variant residues and the change implicated.
BLOSUM score: help -1 The score within a Blosum matrix for the corresponding wild-type to variant amino acid change. The log-odds score measures the logarithm for the ratio of the likelihood of two amino acids appearing by chance. The Blosum62 substitution matrix is used. This substitution matrix contains scores for all possible exchanges of one amino acid with another:
  • Lowest score: -4 (low probability of substitution).
  • Highest score: 11 (high probability of substitution).
More information can be found on the following page

Variant description: help In DDISBA; affects function in neuronal axonal growth; reduced F-actin binding; disturbs cytoskeleton organization and dynamics. Any additional useful information about the variant.


Sequence information Variant position: help 59 The position of the amino-acid change on the UniProtKB canonical protein sequence.
Protein sequence length: help 2364 The length of the canonical sequence.
Location on the sequence: help LFERSRIKALADEREAVQKK T FTKWVNSHLARVSCRITDLY The residue change on the sequence. Unless the variant is located at the beginning or at the end of the protein sequence, both residues upstream (20) and downstream (20) of the variant will be shown.
Residue conservation: help The multiple alignment of the region surrounding the variant against various orthologous sequences.
Human                         LFERSRIKALADEREAVQKKTFTKWVNSHLARVSCRITDLY

Mouse                         LFERSRIKALADEREAVQKKTFTKWVNSHLARVSCRITDLY

Sequence annotation in neighborhood: help The regions or sites of interest surrounding the variant. In general the features listed are posttranslational modifications, binding sites, enzyme active sites, local secondary structure or other characteristics reported in the cited references. The "Sequence annotation in neighborhood" lines have a fixed format:
  • Type: the type of sequence feature.
  • Positions: endpoints of the sequence feature.
  • Description: contains additional information about the feature.
TypePositionsDescription
Chain 2 – 2364 Spectrin beta chain, non-erythrocytic 1
Domain 54 – 158 Calponin-homology (CH) 1
Region 2 – 275 Actin-binding



Literature citations
Pathogenic SPTBN1 variants cause an autosomal dominant neurodevelopmental syndrome.
Cousin M.A.; Creighton B.A.; Breau K.A.; Spillmann R.C.; Torti E.; Dontu S.; Tripathi S.; Ajit D.; Edwards R.J.; Afriyie S.; Bay J.C.; Harper K.M.; Beltran A.A.; Munoz L.J.; Falcon Rodriguez L.; Stankewich M.C.; Person R.E.; Si Y.; Normand E.A.; Blevins A.; May A.S.; Bier L.; Aggarwal V.; Mancini G.M.S.; van Slegtenhorst M.A.; Cremer K.; Becker J.; Engels H.; Aretz S.; MacKenzie J.J.; Brilstra E.; van Gassen K.L.I.; van Jaarsveld R.H.; Oegema R.; Parsons G.M.; Mark P.; Helbig I.; McKeown S.E.; Stratton R.; Cogne B.; Isidor B.; Cacheiro P.; Smedley D.; Firth H.V.; Bierhals T.; Kloth K.; Weiss D.; Fairley C.; Shieh J.T.; Kritzer A.; Jayakar P.; Kurtz-Nelson E.; Bernier R.A.; Wang T.; Eichler E.E.; van de Laar I.M.B.H.; McConkie-Rosell A.; McDonald M.T.; Kemppainen J.; Lanpher B.C.; Schultz-Rogers L.E.; Gunderson L.B.; Pichurin P.N.; Yoon G.; Zech M.; Jech R.; Winkelmann J.; Beltran A.S.; Zimmermann M.T.; Temple B.; Moy S.S.; Klee E.W.; Tan Q.K.; Lorenzo D.N.;
Nat. Genet. 53:1006-1021(2021)
Cited for: INVOLVEMENT IN DDISBA; VARIANTS DDISBA ILE-59; 183-CYS--LYS-2364 DEL; ASP-205; SER-205; HIS-247; ARG-250; GLU-255; ALA-268; ASN-268; SER-268; MET-271; ARG-275; LEU-344; GLN-411; TRP-411; GLN-491; GLY-850; 892-GLU--LYS-2364 DEL; TRP-1003; THR-1086; ASP-1110; SER-1398; PRO-1674; 1787-TRP--LYS-2364 DEL AND GLN-1886; CHARACTERIZATION OF VARIANTS DDISBA ILE-59; 183-CYS--LYS-2364 DEL; ASP-205; SER-205; HIS-247; ARG-250; GLU-255; ALA-268; ASN-268; SER-268; MET-271; ARG-275; LEU-344; GLN-411; TRP-411; GLN-491; GLY-850; 892-GLU--LYS-2364 DEL; TRP-1003; THR-1086; ASP-1110; SER-1398; PRO-1674; 1787-TRP--LYS-2364 DEL AND GLN-1886; FUNCTION; SUBCELLULAR LOCATION; INTERACTION WITH ANK2;
Disclaimer: Any medical or genetic information present in this entry is provided for research, educational and informational purposes only. They are not in any way intended to be used as a substitute for professional medical advice, diagnostic, treatment or care.