Mouse U26 has been defined as a 2-aminoadipic 6-semialdehyde dehydrogenase. It was speculated to be a PQQ-dependent AAS dehydrogenase due to the research of demonstrating PQQ as a new B vitamin. We isolated a novel human cDNA from the human fetal brain cDNA library we constructed. Its deduced protein was most related to mouse U26. Thus, we termed it human U26. This putative protein contains an AMP-binding domain, a Phosphopantetheine-binding domain and six PQQ-binding motifs. Human U26 mRNA is ubiquitously expressed in adult tissues and is highly expressed in colon adenocarcinoma (CX-1) and colon adenocarcinoma (GI-112) cell lines. Further study should be made to clarify the precise function of human U26.
The class of Omega glutathione transferases is newly identified with novel structural and functional characteristics. Human GSTO 1-1 (glutathione S-transferase Omega 1) is the first member of the GST Omega class. It was found to play a role in apoptosis and be in association with age-at-onset of AD and PD. In order to improve the understanding of the properties of other Omega class members, we screened a human fetal brain cDNA library and obtained the human GSTO2 (glutathione S-transferase Omega 2) cDNA. The full-length cDNA of human GSTO2 is 1179 bp long and encodes a protein of 243 amino acid residues. Expression pattern analysis revealed that GSTO2 was ubiquitously expressed at a low level, with a higher expression in pancreas and prostate. Enzyme assays showed that GSTO2 protein had activities similar to Omega class GSTs. It has detectable glutathione-dependent thiol transferase activity and glutathione-dependent dehydroascorbate reductase activity. But different from GSTO1-1, GSTO2 exhibits a high catalytic activity with CDNB. Subcellular localization analysis of GSTO2-EGFP fusion protein revealed that GSTO2 distributed to cytoplasm of COS-7 cells and both cytoplasm and nucleus of L-02, QGY-7703 and SMMC-7721 cells. Overexpression of GSTO2 induced apoptosis of L-02 cells detected by Annexin V-PE staining. The results suggest that GSTO2 may play an important role in cellular signaling.
BTB/POZ domain is an evolutionarily conserved protein-protein interaction domain often found in developmentally regulated transcription factors. Previous studies have shown that many additional conserved motifs have been found in association with BTB/POZ domain, including kelch repeats, zinc finger domains, FYVE fingers and ankyrin repeats. Here we report a novel human gene containing double BTB/POZ domains, named BTBD8 in agreement with the HUGO Nomenclature Committee. The cDNA sequence contains an open reading frame of 918 bp encoding a putative protein of 305 amino acid residues with a predicted molecular mass of 34.6 kDa. Protein pattern analysis shows that it contains double BTB/POZ domains. Weak expression was detected in adult brain and prostate of the 16 adult tissues examined, while it had a more abundant expression pattern in human fetal brain. The expression pattern of BTBD8 shows it may have a function related to brain development.
SGT1.2, a novel splice variant of Homo sapiens SGT1 was isolated from a human fetal brain cDNA library. This cDNA is 1404 bp and contains an open reading frame from 68 to 1165 encoding a putative protein of 365 amino acids (SGT1.2) that share 90% identities to Homo sapiens SGT1, suppressor of G2 allele of SKP1 at protein level. RPS-BLAST searching revealed that SGT1.2 have a TPR domain, a p23 domain, a SGS domain and a CS domain. According to the search of the human genome database, SGT1.2 was mapped to human chromosome 13q14.13. Reversed transcription-polymerase chain reaction analysis indicated that it widely expressed in human adult tissues.
Dual-specificity protein phosphatases (DSPs), a new family of protein tyrosine phosphatases (PTPs), are characterized by the ability to dephosphorylate both phospho-tyrosyl and phospho-seryl/threonyl residues. It has been known that most of the enzymes play important roles in the regulation of mitogenic signal transduction and control the cell cycle in response to extracellular stimuli. In this study, a novel human DSP gene named Dual-specificity Phosphatase18 (DUSP18) was isolated by large-scale sequencing analysis of a human fetal brain cDNA library. DUSP18 is localized at Chromosome 22 q12.1. Its cDNA is 2450 base pairs in length, encoding a 188-amino acid polypeptide in which a DSP motif but not a CH2 domain is included. RT-PCR revealed that the DUSP18 was widely expressed in different tissues. GST-DUSP18 fusion protein showed distinctive phosphatase activity toward p-nitrophenyl phosphate (pNPP), as well as oligopeptides containing pThr and pTyr, indicating that DUSP18 is a protein phosphatase with dual substrate specificity. The optimal condition for the reaction was pH 6.0 and 55 °C. Addition of Mn2+ ions was able to enhance the enzyme activity while the activity was strongly inhibited by iodoaretic acid. Mutations in selected sites showed the importance of Asp-73, Cys-104, Arg-110 and Ser-111 in phosphatase activity of DUSP18.
Synaptoporin is a membrane protein of synaptic vesicles, which belongs to the synaptophysin family. It was first isolated from rat brain. Here we report the cloning and characterization of the human cDNA that encodes the human homologue of synaptoporin. It has two splicing variants, which is in accordance with its ortholog in chicken. Its deduced amino acid sequence displays 97% and 81% identity with the synaptoporin of rat and chicken, respectively. This gene was mapped to the chromosome 3p14.3 by matching against the Human Genome Sequence Database. 16-tissue RT-PCR analysis shows that human synaptoporin is specifically expressed in the brain.
The kelch-repeat protein family is a recently found new kind of actin-binding protein. It is characterized by tandemly arranged motifs of about 50 amino acids [7]. Previous study showed that most members of the kelch-repeat family were cytoskeletal proteins implicated in various cellular processes, such as actin cytoskeleton interaction, cytoplasmic sequestration of transcription factors and cell morphology [1]. And some of the family members play important roles in tissue development, such as human ENC-1, NRP/B, etc. Another characteristic of the kelch family is that most members have another conserved BTB domain at the extreme amino terminus. The BTB domain is also found at the N-terminus of 5–10% of zinc-finger transcription factor types and is a conserved protein-protein interaction motif [15]. During the large-scale sequencing analysis of a human fetal brain cDNA library we found a novel kelch-like protein gene 5, KLHL5[11], KLHL5 has high identity with Drosophila kelch protein and many other family members. Here we report a novel splicing variants of KLHL5, named KLHL5b and the expression pattern of KLHL5b in many tissues.
Sprouty (SPRY) was first identified in a genetic screen in Drosophila to be an antagonist of fibroblast growth factor (FGF) and epidermal growth factor (EGF) signaling, seemingly by inhibiting the Ras/MAP kinase pathway. During large scale DNA sequencing of the human fetal brain cDNA library, we cloned a novel splice variant of human Sprouty1 gene, and termed it human Sprouty1b (SPRY1b). It has the same deduced protein as Sprouty1a, which has been reported. And like other members of Sprouty family, SPRY1b deduced protein also has a C-terminal cysteine-rich region. According to the search against human genome database, SPRY1b was mapped to 4q25-28. Expression analysis of SPRY1a and SPRY1b shows that they are hardly expressed in adult human, but have different expression patterns in fetus, which confirmed that SPRY1 is an important gene during fetal development.
Hydroxysteroid dehydrogenases (HSDs) are responsible for the biosynthesis of steroid hormones and play a crucial role in mammalian physiology and development. By large-scale sequencing analysis of a human fetal brain cDNA library, we isolated a novel human hydroxysteroid dehydrogenase-like cDNA (HSDL2). This cDNA is 3211 bp in length, encoding a 418–amino-acid polypeptide, which contains a typical motif for NAD(P) + -binding (TGxxxGxG), an SDR active site motif (S-Y-K) and a sterol carrier protein domain. HSDL2 shows high similarity with the homologues in the mouse and fruit fly. The HSDL2 gene is mapped to chromosome 9q32 and contains 11 exons. RT-PCR analysis shows that the HSDL2 gene is widely expressed in human tissues and the expression levels in liver, kidney, prostate, testis, and ovary are relatively high.
NF-kappaB-repression factor (NRF) is a nuclear inhibitor of NF-kappaB proteins that can silence the IFNbeta promoter. Since NRF was cloned in 1999, in-depth studies have been conducted on the biological functions of this constitutive repressor of NF-kappaB proteins. During large-scale sequencing of a human fetal brain cDNA library we isolated a novel human cDNA that proved to be a correct full-length NRF cDNA. The deduced protein contains 690 aa, and has a G-patch and an R3H domain at its C-terminus. The size of the protein is consistent with its counterparts in mouse and rat. There is considerable evidence that there are some mistakes in the NRF cDNA sequence reported by Nourbakhsh. Here we report the correct, full-length cDNA and protein sequences of NRF. Full-length NRF cDNA is 3247 bp long, contains three exons and maps to human chromosome Xq24. RT-PCR shows that NRF is widely expressed in human tissues.
Mutations in the X-linked gene doublecortex (DCX) result in lissencephaly in males or subcortical laminar heterotopia (double cortex) in females. Recently, an evolutionarily conserved doublecortin (DC) domain important for microtubule binding and microtubule polymerization was defined according to detailed sequence analysis of DCX and DCX-like proteins. Subsequently we cloned a novel human cDNA that contained a DC domain during large-scale DNA sequencing of the human fetal brain cDNA library, and termed it doublecortin-domain-containing 1 (DCDC1). According to a search against the human genome database, DCDC1 was mapped to 11p13. Expression analysis showed that DCDC1 was mainly expressed in adult testis. Furthermore, the expression level of DCDC1 in fetal brain was much higher than in adult brain.
We report here cloning and characterization of a novel human gene, termed C5orf12, which is a putative membrane protein belonging to the TMS_TDE family. The cDNA encodes 42 animo acid with a putative molecular weight of about 47 KDa. Secondary structure prediction showed that C5orf12 contained 10 putative transmembrane helices, which has high identity with other family members. We performed RT-PCR to examine its expression pattern. The result showed that C5orf12 was highly expressed in placenta, skeletal muscle, spleen, thymus, testis and peripheral leukocyte while expressed weakly in heart and liver. C5orf12 has high identity with the rat TPO1, so we speculate that C5orf12 may also have a role in the brain development.
Densin-180 is a brain-specific synaptic protein of the o-sialoglycoprotein family. It functions in specific adhesion between presynaptic and postsynaptic membranes at glutamatergic synapses. We have cloned a novel splice variant of densin-180 from a fetal brain cDNA library and termed it LRRC7. It is located on 1p31 and consists of 8 exons. It encodes a putative protein of 216 amino acids which contains a nuclear localization signal and four leucine-rich repeats (LRRs). LRRs are 20-29 residue sequence motifs present in a number of proteins with diverse functions. Expression analysis of LRRC7 shows it is expressed ubiquitously while its splice variant densin-180 is brain-specific.
Glycerophosphodiester phosphodiesterase (GDPD) is a glycerol metabolizing enzyme that has been previously identified in Escherichia coli, Haemophilus influenzae, Bacillus subtilis and Borrelia hermsii. It has been also reported that there is putative protein containing GDPD domain in Mus musculus, but not in Homo sapiens. SMART analysis showed that our predicted protein and three others of the same gene also comprise this domain. Because the gene has not been named, we termed it GDPD1 and accordingly termed our splice variant GDPD1_v1 after acquiring the agreement of HUGO. RT-PCR experiment revealed that our splice variant of the gene is mainly expressed in human ovary and small intestine, basically conforming to the result of serial analysis of gene expression.
KHDRBS2, KH domain containing, RNA binding, signal transduction associated 2, is an RNA-binding protein that is tyrosine phosphorylated by Src during mitosis. It contains a KH domain,which is embedded in a larger conserved domain called the STAR domain. This protein has a 99% sequence identity with rat SLM-1 (the Sam68-like mammalian protein 1) and 98% sequence identity with mouse SLM-1 in its STAR domain. KHDRBS2 has the characteristic Sam68 SH2 and SH3 domain binding sites. RT-PCR analysis showed its transcript is ubiquitously expressed. The characterization of KHDRBS2 indicates it may link tyrosine kinase signaling cascades with some aspect of RNA metabolism.
The DExH/D-box superfamily of RNA helicases seems to play key roles during RNA metabolism, such as pre-mRNA splicing, ribosome biogenesis, and others. We have cloned a new gene of the DEAH-box protein subgroup, designated DDX40 (DEAD/H-box polypeptide 40 gene). DDX40 contains 3656 nucleotides and codes for a putative 779-amino-acid protein. Sequence analysis of the cDNA product revealed that it contained a DEAH (Asp-Glu-Ala-His) sequence motif and other conserved motifs. The DDX40 protein shared 53% and 43% amino acid identity with human DDX8 and yeast Drh1, respectively, in the conserved region. Northern blot analysis showed that DDX40 was expressed ubiquitously in the eight tissues examined, implying a general physiological function of the protein. We speculate that, like other members of the DExH/D-box superfamily, DDX40 may play roles in pre-mRNA splicing, ribosome biogenesis and other RNA processing functions.
We report here cloning and characterization of a novel human gene, termed VMP, which is a vesicular membrane protein. RT-PCR analysis shows that VMP is expressed exclusively in brain of the 16 tissues examined, suggesting that it is a neuron-specific membrane protein. The cDNA encodes 195 amino acid with a putative molecular weight of about 24 KDa. VMP contains two putative membrane spanning domains and a hydrophilic tail homologous to the microtubule-binding domain of MAPs. So it is speculated that VMP may associated with microtubules through its C-terminal and plays an important role in vesicular organelles transport and nerve signals.