| Literature DB >> 19740416 |
Hartmut Schlüter1, Rolf Apweiler, Hermann-Georg Holzhütter, Peter R Jungblut.
Abstract
Our knowledge of proteins has greatly improved in recent years, driven by new technologies in the fields of molecular biology and proteome research. It has become clear that from a single gene not only one single gene product but many different ones - termed protein species - are generated, all of which may be associated with different functions. Nonetheless, an unambiguous nomenclature for describing individual protein species is still lacking. With the present paper we therefore propose a systematic nomenclature for the comprehensive description of protein species. The protein species nomenclature is flexible and adaptable to every level of knowledge and of experimental data in accordance with the exact chemical composition of individual protein species. As a minimum description the entry name (gene name + species according to the UniProt knowledgebase) can be used, if no analytical data about the target protein species are available.Entities:
Year: 2009 PMID: 19740416 PMCID: PMC2758878 DOI: 10.1186/1752-153X-3-11
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Figure 1The three main strategies in proteomics. 2-DE: two-dimensional electrophoresis; LC: liquid chromatography; n-D: n-dimensional; db: database; MS: mass spectrometry; PMF: peptide mass fingerprint; PTM: post-translational modification.
Figure 2Scheme of the flow of information starting with extracellular events via receptors, transcription factors and other proteins regulating gene expression and determining synthesis and processing of protein species. IP: interacting partner biomolecules.
Figure 3Protein species (sACE P12821; g-ACE P22966) derived from the angiotensin-converting enzyme gene. CaM: calmodulin.
Figure 4Protein species (GAPDH P04406) derived from the GAPDH gene. Siah1: protein interacting with GAPDH.
Some examples of different functions and localizations of GAPDH.
| Apoptosis (Figure 4) | Nucleus | Nitrosylation | Siah | [ |
| Plasma membrane fusion | Membrane | - | Anion exchanger protein | [ |
| Microtubule structure and function | Cytoplasm | - | Tubulin | [ |
| Translational regulation | - | - | 5V and 3VUTR mRNA sequence | [ |
| Cell transport properties | Secretory vesicles | Phosphorylation | PKCL/E | [ |
| Transcription control | Nucleus | - | Oct-1 transcription factor + | [ |
| Nucleus | - | Telomeres | [ | |
| Intranuclear transport | Nucleus | - | tRNA precursors | [ |
| Cell proliferation | - | - | Ap4A | [ |
| Nuclear membrane | Nuclear envelope | - | - | [ |
*post-translational modification
Overview of the individual terms (descriptors) of the protein species nomenclature
| A: Gene | Entry name (gene name + species) | G_ACE_humana |
| B: Nucleotide polymorphism | SNP Accession number | SNP_rs10853044 |
| C: Initial amino acid sequence of the protein synthesized at the ribosome | Accession number (AC) + sequence version (_1) | AC_ P12821-1_1 |
| Splicing variant (S) with deletion _ localisation of the deletion | SD_70-79 | |
| Splicing variant with insertion _ localisation of the insertion | SI_43_ LLELFVMFL | |
| Splicing variant with an exchange of amino acids | SE_38_RQELWQG_SKEHWNQb | |
| D: Proteolysis | Truncated amino acids: 1-17: the first 17 amino acids were removed | T_1-17 |
| E: Posttranslational Modification (P) | Position of the modified amino acid | P_33_21c |
| F: Cofactor (C) | Identity of non-covalently bound cofactors | C_Zn(2x)d |
| G: Further descriptors | Can be added, if necessary | X, Y |
aaccording to the term in the UniProt knowledgebase [35]
b38 indicates the number of the first exchanged amino acid of the peptide. SKEHWNQ is the peptide present in the protein species, which was substituted for RQELWQG.
c the first number (here: 33) gives the position of the modified amino acid; the second number gives the type of the post-translational modification according to the UniMod [6] accession number (here: 21 indicating a phosphorylation)
d here the term indicates the presence of 2 cations of Zn