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Familial amyloid polyneuropathy in Taiwan: identification of transthyretin variant (Leu55-->Pro).

We report a family with familial amyloid polyneuropathy (FAP), showing an early-onset and a fatal outcome before age 30. Transthyretin (TTR) gene analysis showed one point mutation (T-->C change) in the second base of codon 55, and the corresponding amino acid substitution of proline (Pro) for leucine (Leu) was confirmed at the protein level. This is the first FAP family of Taiwanese origin demonstrating a causative gene abnormality, and FAP with TTR-Pro55 was considered to be more serious compared with other forms of FAP.

Adolescent↗

Identification of splicing variants of Frabin with partly different functions and tissue distribution.

Frabin is a GDP/GTP exchange protein for Cdc42 small G protein with actin filament-binding activity. Frabin consists of the actin filament-binding domain, the Dbl homology domain, the first pleckstrin homology domain, the FYVE-finger domain, and the second pleckstrin homology domain in this order from the N-terminus. Frabin forms filopodia through direct activation of Cdc42 and lamellipodia through indirect activation of Rac small G protein. We isolated here two smaller splicing variants of frabin and named the original one, middle-size one, and smallest one frabin-alpha, -beta, and -gamma, respectively. Frabin-beta lacked the second pleckstrin homology domain and frabin-gamma lacked the FYVE-finger domain and the second pleckstrin homology domain. These three variants were expressed in all of the tissues examined but their expression levels are different depending on tissues. In L fibroblasts, all the three variants formed filopodia. As to lamellipodia, frabin-alpha formed them; frabin-beta formed them to a small extent; and frabin-gamma did not. In MDCK epithelial cells, frabin-alpha formed microspikes but frabin-beta or -gamma did not.

Alternative Splicing↗

Molecular cloning of a member of the facilitative glucose transporter gene family GLUT11 (SLC2A11) and identification of transcription variants.

We isolated a member of the facilitative glucose transporter (GLUT) gene family (GLUT11; SLC2A11 as a HGMW-approved symbol) based on the analysis of a human genomic BAC clone KB1125A3 located on band q11.2 of human chromosome 22. The gene GLUT11/SLC2A11 consists of 12 exons spanning over 29 kb in size and is located between two genes, SMARCB1 and MIF. The deduced amino acid sequence indicated the topological features of transmembrane helices and sequence motifs which are common to the GLUT protein family. The cDNA cloning revealed the presence of three types of variation in its transcripts. The first variation is caused by the existence of three distinct first exons (SLC2A11-a, -b, and -c). PCR analysis of multi-tissue-derived cDNA panels indicated the differential expression of these transcript variants. The second variation is caused by skipping over one exon (exon 6). The third variation is caused by the premature transcription termination at a site between exon 8 and exon 9. Both exon skipping and premature termination caused frameshift, resulting in the production of truncated GLUT11/SLC2A11 transcripts. These results suggested that transcription of GLUT11/SCL2A11 gene is controlled in a complex manner.

Amino Acid Motifs↗

Identification of novel variants of trkC mRNA transcripts in brain of African green monkeys.

The distinct biological effects of neurotrophins are mediated in part through their binding to the high-affinity neurotrophin receptors represented by the Trk family of receptor tyrosine kinases. Using the technique of reverse transcriptase-polymerase chain reaction (RT-PCR), we cloned several partial cDNAs encoding trkA, trkB, and trkC from fetal brains of African green monkeys. Southern analysis of PCR products showed that the ventral tegmental area of adult monkey and ventral midbrains of fetal monkeys of E59, E81, E91, and E150 days of gestation expressed all three trk gene transcripts, whereas only trkB and trkC mRNAs were detectable in the adult substantia nigra. The nucleotide sequences of the cloned monkey trk cDNAs are highly homologous to their human counterparts, and we detected a splice variant of trkC that has recently been described in humans, but not in rodents. Moreover, sequencing of trkC cDNAs derived from four fetal monkey midbrains revealed two novel variants with single nucleotide substitution. A missense mutation (AAT to AGT) was identified in the codon corresponding to codon 361 of the deduced human TrkC sequence, converting an encoded Asn to Ser. The second variant involves a silent transition at the third nucleotide of the codon Gly 362 (GGC to GGA). Furthermore, three of the four potential alleles involving these two trkC variants were detected in these monkeys, indicating that a segregation of multiple trkC alleles occurs in a geographically contained population of feral monkeys.

Animals↗

Genomic structure of the human plasma prekallikrein gene, identification of allelic variants, and analysis in end-stage renal disease.

Kallikreins are serine proteases that catalyze the release of kinins and other vasoactive peptides. Previously, we have studied one tissue-specific (H. Yu et al., 1996, J. Am. Soc. Nephrol. 7: 2559-2564) and one plasma-specific (H. Yu et al., 1998, Hypertension 31: 906-911) human kallikrein gene in end-stage renal disease (ESRD). Short sequence repeat polymorphisms for the human plasma kallikrein gene (KLKB1; previously known as KLK3) on chromosome 4 were associated with ESRD in an African American study population. This study of KLKB1 in ESRD has been extended by determining the genomic structure of KLKB1 and searching for allelic variants that may be associated with ESRD. Exon-spanning PCR primer sets were identified by serial testing of primer pairs designed from KLKB1 cDNA sequence and DNA sequencing of PCR products. Like the rat plasma kallikrein gene and the closely related human factor XI gene, the human KLKB1 gene contains 15 exons and 14 introns. The longest intron, F, is almost 12 kb long. The total length of the gene is approximately 30 kb. Sequence of the 5'-proximal promoter region of KLKB1 was obtained by shotgun cloning of genomic fragments from a bacterial artificial clone containing the KLKB1 gene, followed by screening of the clones using exon 1-specific probes. Primers flanking the exons and 5'-proximal promoter region were used to screen for allelic variants in the genomic DNA from ESRD patients and controls using the single-strand conformation polymorphism technique. We identified 12 allelic variants in the 5'-proximal promoter and 7 exons. Of note were a common polymorphism (30% of the population) at position 521 of KLKB1 cDNA, which leads to the replacement of asparagine with a serine at position 124 in the heavy chain of the A2 domain of the protein. In addition, an A716C polymorphism in exon 7 resulting in the amino acid change H189P in the A3 domain of the heavy chain was observed in 5 patients belonging to 3 ESRD families. A third polymorphism in the coding sequence was a C699A shift that caused an amino acid change, H183Q. This allele was observed in 8 cases from 6 ESRD families but was not found in any control DNAs. Individually or combined, the allelic variants observed are not statistically associated with ESRD, though in several cases (e.g., H183Q) the small number of people in the population carrying these alleles limits our ability to statistically test for significant association with ESRD. Two new CA/GT repeat polymorphic markers, designated KLK3f and KLK3g, that have heterozygosities of 0.65 and 0.84, respectively, were identified within introns M and N. Analysis using the relative predispositional effect technique indicated that the frequencies of alleles 4 and 8 of KLK3f and allele 8 of KLK3g were significantly different between controls and ESRD cases. They accounted for 0.226, 0.096, and 0.313, respectively, in the probands of 166 ESRD families compared to 0.172, 0.066, and 0.244 in 139 healthy race-matched controls (allele P and total P < 0.05 for all three alleles). Therefore, although polymorphisms in the coding and 5'-proximal promoter of KLKB1 show no statistically significant association with ESRD in African Americans, there is still evidence for association of this part of chromosome 4 with ESRD. This observation suggests that other sequences within or near KLKB1, or another gene nearby, may contribute to ESRD susceptibility.

Alleles↗

Supporting the structural basis of prion strains: induction and identification of [PSI] variants.

The [PSI] genetic element, which enhances the nonsense suppression efficiency in the yeast Saccharomyces cerevisiae, is thought to be amyloid-like aggregates of the Sup35 protein, and to self-propagate by a prion-like mechanism. Analogous to strains of the mammalian prion, variants of [PSI], with different nonsense suppression efficiencies and mitotic stabilities, can be isolated from the same yeast genetic background. In the framework of the "protein-only" hypothesis, variants of prion are assumed to be distinct conformers of the same prion polypeptide. This study aims to provide further support for the structural basis of [PSI] variation. Three variants of [PSI] were induced and distinguished by a panel of 11 single point mutations of the Sup35 protein. The variant phenotypes are intrinsically associated with [PSI] elements, presumably structurally different amyloids, rather than produced from variations in the genetic background. Differential incorporation to [PSI] variants of a Sup35 point mutation as well as N and C-terminally truncated Sup35 fragments is further demonstrated in vivo, suggesting that distinct patches of amino acid residues are involved in the assembly of [PSI] variants. These results establish a method for [PSI] variant-typing and indicate that heritable variations of amyloid structures can be derived from the same polypeptide.

Alleles↗

Identification of a variant A-specific neutralizing epitope on glycoprotein B (gB) of human herpesvirus-6 (HHV-6).

Based on genetic, antigenic, and growth properties, human herpesvirus-6 (HHV-6) can be classified into two groups, variant A (HHV-6A) and variant B (HHV-6B). We have mapped the HHV-6A-specific epitope on glycoprotein B (gB), which was recognized by a monoclonal antibody (MAb), 87-y-13, with a complement-independent neutralizing activity. Plasmids carrying various chimeric gB sequences formed between strains U1102 (HHV-6A) and HST (HHV-6B) and carrying sequences for a series of carboxy-terminal deletions of U1102 gB were constructed. By using the plasmids, in vitro transcription and subsequent in vitro translation were carried out. Immunoprecipitation assay of the translated products with MAb 87-y-13 revealed that MAb 87-y-13 was able to react only with in vitro translation products containing the sequence between amino acid residues 335 and 395 of U1102 gB. Amino acid sequence comparison between HHV-6A and HHV-6B in this region showed that amino acid residues 347, 387, and 393-395 were HHV-6A-specific. To determine which amino acid residue(s) was involved in recognition by MAb 87-y-13 as well as in the neutralizing activity, point mutations were introduced at those amino acid positions. Immunoprecipitation assay of the mutagenized gB with point mutations suggested that the neutralizing MAb-y-13 was involved in the recognition of the amino acid Asn at residue 347 of U1102 gB (HHV-6A). This site may play an important role in viral infection.

Amino Acid Sequence↗

Identification of common variant alleles of the human guanosine monophosphate reductase gene.

Examination of nucleotide sequences of genomic DNA samples obtained from several unrelated Caucasians and orientals revealed the existence of four variant alleles in the chromosome 6-linked quanosine monophosphate reductase locus. The wild-type gene has T at position 42 (counting from A of the chain initiation codon), C at 630, G at 700, and T at 766, i.e., its structure is T(42)-C(630)-G(700)-T(766). The variant gene, T-T-G-T, was found in about 10% of the loci examined. The C-to-T change at 630 was silent and did not induce any amino acid substitution (His at amino acid residue 210), but it created an additional NcoI cleavage site in the variant gene. The frequency of another variant, the T-C-G-A gene, was about 30%. The T-to-A change at 766 caused an amino acid substitution Phe----Ile at amino acid residue 256 in the variant protein. Frequencies of the C-C-G-T variant and the T-C-A-T variant were probably lower than 5% in Caucasians and orientals.

Alleles↗

The polymorphism of desialyzed alpha 2HS-glycoprotein (AHS): isoelectric focusing in 2.5 M urea as a method for identification of genetic variants.

Desialyzed plasma specimens were phenotyped for alpha 2HS-glycoprotein (AHS) using polyacrylamide isoelectric focusing (IEF) in the range pH 5-6 in 2.5 M urea, followed by immunoblotting. The technique used in this study is easy to perform and can differentiate the gene products of all the currently known variants of alpha 2HS-glycoprotein except for AHS 4.

Blood Proteins↗

The polymorphism of the vitamin D-binding protein (Gc); isoelectric focusing in 3 M urea as additional method for identification of genetic variants.

Since the last report numerous new DBP (Gc) variants have been observed; at present a total of 84 different mutants can be distinguished. Several of them have similar electrophoretic mobilities and/or isoelectric points of conventional isoelectric focusing (IEF). IEF in polyacrylamide gels in the presence of 3 M urea is a convenient and efficient method for the detection of hidden variation.

Carrier Proteins↗

Identification of pathogenic variants in six Chinese families with keratoconus of autosomal dominant inheritance: pathogenicity analysis and variable phenotype.

PURPOSE: Keratoconus (KC) is a bilateral, asymmetric disease causing corneal thinning, irregular astigmatism, and vision decline, with unclear etiology. This study aims to investigate pathogenic variants of candidate genes in Chinese KC families via whole exome sequencing (WES). METHODS: The Pentacam 3D anterior segment analysis system was applied for keratectasia detection, and the Corvis ST was used for corneal biomechanics measurement. Probands from KC families were screened via WES and further verified in other family members through Sanger sequencing. Additionally, qPCR was used to validate copy number variants and identify pathogenic gene loci. The identified variants were then classified according to the Standards and Guidelines for the Interpretation of Sequence Variants published by the American College of Medical Genetics and Genomics (ACMG). Finally, STRING protein-protein interaction (PPI) networks analysis was performed to investigate interactions among candidate gene-related proteins. RESULTS: Using WES, four heterozygous missense variants were detected in the ZNF469, KRT12, COL8A2, and COL18A1 genes: c.4384G&#x2009;>&#x2009;A: p.Asp1462Asn, c.1229T&#x2009;>&#x2009;G:p.Val410Gly, c.505A&#x2009;>&#x2009;G:p.Ile169Val, and c.1159G&#x2009;>&#x2009;A:p.Gly387Arg. Additionally, a heterozygous frameshift variant was detected in the PMS2 gene: c.1551_1572del:p.Ser517Argfs*71. The affected parents carried the same variants as the probands verified by Sanger sequencing. A copy number variant was detected in the DPP6 gene: seq[GRCh38] dup(7)(q36.2q36.2) chr7:g.153782360_ 153982491dup. According to ACMG guidelines, ZNF469, KRT12, COL8A2, and COL18A1 gene variants are Likely Pathogenic; PMS2 and DPP6 gene variants are Pathogenic. STRING analysis highlights a tightly interconnected network centered on COL8A2, involving COL18A1, FN1, ZNF469, and KRT12. DPP6 was involved in KC via affecting FN1. In four of six autosomal dominant KC (adKC) families, affected parents had the same variants as probands but milder phenotypes. CONCLUSION: In this study, six novel variants in ZNF469, KRT12, COL8A2, COL18A1, PMS2, and DPP6 were linked to adKC. Family phenotypes showed variable expressivity with irregular dominance inheritance. Abnormal KC-related gene protein expression may contribute to corneal structural instability. This study broadened KC genetic screening candidates and suggested genetic testing could aid early KC diagnosis and intervention.

Adult↗

Identification of Mr variants of prolactin with monoclonal antibodies.

Monoclonal antibodies ( QB01 and 1200) prepared against human prolactin (hPRL) have helped define a variant form of the hormone. This variant is of apparently higher molecular mass (26 kDa) than the predominant form of the hormone (24 kDa) and its presence does not appear to be species-restricted. The demonstration of the 26 kDa form of hPRL in fresh pituitary tissue and amniotic fluid suggests it may retain some specific function.

Amniotic Fluid↗

Identification of a variant collagen alpha 3 (VI) in early-stage avian arteriosclerotic plaques.

A 170 kD protein, prominent in soluble extracts of rooster arteriosclerotic plaques, has been partially characterized. The protein was eluted from a size exclusion column in a broad molecular weight fraction > 100 kD. Concanavalin A and a murine polyclonal antibody raised against the isolated 170 kD protein reacted with the protein on Western blots. The 170 kD protein had an isoelectric point of approximately 5.4 and was digested by collagenase treatment. Amino acid analysis of a 70 kD fragment of the protein closely resembled that for chick collagen alpha 3 (VI). A 13 amino acid sequence within this 70 kD fragment had 69% identity and 85% homology to chicken collagen alpha 3 (VI). Soluble protein extracts from cultured plaque smooth muscle cells (SMC), and from healthy artery SMC, contained low levels of the protein. These cellular extracts also reacted with the polyclonal antibody described above. Although the protein lacks absolute amino acid sequence identity with collagen alpha 3 (VI) it shares with it many biochemical features, suggesting that the 170 kD protein is a variant species of chick collagen alpha 3 (VI).

Amino Acid Sequence↗

DNase activity in Costa Rican crotaline snake venoms: quantification of activity and identification of electrophoretic variants.

DNase activity of Costa Rican crotaline snake venoms from the genera Bothrops, Crotalus and Lachesis was quantified by an enzymodiffusion method on agarose/DNA gels containing ethidium bromide. The reaction is detected as a ring lacking fluorescence when gels are visualized under u.v. light. Electrophoresis of non-fluorescent areas demonstrated DNA degradation. All of the venoms had DNase activity, B. schlegelii being most active. Venoms from B. schlegelii and B. asper induced an inner hyper-fluorescent ring in addition to the external non-fluorescent ring, probably caused by the formation of complexes between DNA and highly basic proteins present in these venoms. In order to study the number of electrophoretic DNase variants, venoms were separated by analytical isoelectric focusing on polyacrylamide minigels, proteins were transferred to nitrocellulose paper and the paper was placed over an agarose gel containing DNA. Then the agarose gel was stained with ethidium bromide and the bands of DNase activity were visualized under u.v. light. All the venoms tested, as well as commercial DNase showed several bands with DNase activity. The majority of venom DNase variants have basic pIs although bands with acidic pIs were also present in B. godmani and L. muta venoms. No major differences in the DNase electrophoretic pattern were observed between individual venoms of adult B. asper specimens nor between lyophilized and frozen venoms.

Crotalid Venoms↗

Low-stringency single specific primer PCR, DNA sequencing and single-strand conformation polymorphism of PCR products for identification of genetic variants of human papillomavirus type 16.

Two fragments from within the long control region of the genome of human papillomavirus type 16 (HPV16) were amplified using the polymerase chain reaction (PCR). Putative genetic variation among the parent viruses was assessed by complete sequence analysis and single-strand conformation polymorphism (SSCP) analysis of one of the fragments and by application of the recently described low-stringency single specific primer (LSSP) PCR to both PCR products. The study comprised 34 HPV16 positive samples, derived from seventeen different individuals. It is demonstrated that under experimentally standardised conditions the LSSP PCR-, sequencing- and SSCP-data display differing degrees of resolution. Based on combined LSSP PCR analyses, 33 out of 34 samples can be discriminated, whereas SSCP and direct sequencing identify 4 and 8 types, respectively. Although the variability observed among LSSP PCR patterns may be the consequence of small quantities of mutated viral amplimers, no concordant grouping of strains, identical by sequencing and SSCP analysis, can be established by either of the four theoretically possible LSSP PCR assays. Results are discussed in the context of experimental variability of the procedures or genetic heterogeneity of HPV16 pools derived from cervical swabs.

Base Sequence↗

dlk, pG2 and Pref-1 mRNAs encode similar proteins belonging to the EGF-like superfamily. Identification of polymorphic variants of this RNA.

dlk encodes a transmembrane protein member of the EGF-like family of homeotic proteins. dlk is expressed in the same type of neuroendocrine tissues and tumors as pG2, a gene cloned because of its differential expression in human pheochromocytomas versus neuroblastomas. Human dlk and pG2 cDNAs are around 98% similar in sequence, but the predicted proteins encoded by those genes are apparently unrelated. This fact suggested the existence of polymorphic variants of the same gene. We have sequenced again several pG2 and dlk clones in parallel. We identified a pG2 cDNA species corresponding to an alternatively spliced dlk mRNA, as well as several other variant forms of dlk mRNA. One of the pG2 clones resulted to be identical to human dlk and encode the same EGF-like protein. Pref-1, a cDNA isolated from 3T3-L1 fibroblasts, encodes a putative protein possessing an extracellular EGF-like domain similar to dlk, but a different intracellular region. Analysis of sequence data from different clones obtained in our laboratory confirmed some of the differences between dlk and Pref-1. However, the putative difference in the intracellular regions of dlk and Pref-1 was due to sequence artifacts. These data suggest that dlk, pG2 and Pref-1 are variant products of the same gene.

Amino Acid Sequence↗