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Biomedical subjects

L Ho

Publications and source records attributed to L Ho.

At least 55 records · Page 3Linked to original sources

A gene for autosomal dominant hypohidrotic ectodermal dysplasia (EDA3) maps to chromosome 2q11-q13.

Autosomal dominant hypohidrotic ectodermal dysplasia (ADHED) is a disorder characterized by fine, slow-growing scalp and body hair, sparse eyebrows and eyelashes, decreased sweating, hypodontia, and nail anomalies. By genetic linkage analysis of a large ADHED kindred, we have mapped a gene for ADHED (EDA3) to the proximal long arm of chromosome 2 (q11-q13). Obligate recombinations localize EDA3 to an approximately 9-cM interval between D2S1321 and D2S308, with no apparent recombinations with markers D2S1343, D2S436, D2S293, D2S1894, D2S1784, D2S1890, D2S274, and CHLC.GAAT11C03.

Chromosomes, Human, Pair 2↗

Accidental ingestions in childhood.

One-hundred and twelve cases of accidental poisoning were admitted over a 2-year study period (December 1990 to December 1992). Data was collected upon admission and patients were subsequently followed-up. Fifty-four percent of admission were boys. Majority of them were toddlers between the ages of 1 and 3 years. Thirty percent of accidental ingestions occurred during the school/public holidays. These occurred when the caretakers were preoccupied. Forty-nine percent of patients ingested oral medication; 16% ingested household liquids and the rest ingested other household products like cockroach tablets and thermometer mercury. The most commonly ingested medications were paracetamol, salicylate and bronchodilators, whilst chlorox, kerosene and detergents were the common household liquids ingested. The ability of the caregivers to quantitate the ingested product was poor. The mean hospital stay of the patients was 2.5 days. The majority of them were admitted for observation which did not require antidotes. Four cases were observed in the intensive care unit. There were no fatalities during the study period. Forty-four percent of the patients had samples taken for toxicology analysis, of which, less than half had positive results. All the patients were advised on the safety measures to look out for after admission. Less than 10% of cases had prior knowledge of such measures before the accidents occurred.

Child↗

Analysis of E2 amino acid variants of human papillomavirus types 16 and 18 and their associations with lesion grade and HLA DR/DQ type.

Human papillomavirus (HPV) 16 and HPV 18 E2 amino acid variants and host HLA DR/DQ haplotypes have been identified by direct nucleic acid sequencing from cervical scrapes. HPV16 E2 variants co-segregate with a nucleotide variant at nt350 (in E6), which previously has been associated with persistent infections. Both HPV16 and HPV18 E2 variants occur relatively more frequently in individuals with HLA DR/DQ haplotypes 0401/0301 and 1101/0301 but are not related to lesion grade.

Amino Acids↗

Sensitivity to jerky gene dosage underlies epileptic seizures in mice.

Animals with one deleted jerky allele are more susceptible to chemically induced seizures than wild-type mice and display recurrent behavioral seizures. The phenotype of these hemizygotes is characterized by no apparent neurological symptoms other than recurrent seizures reminiscent of human idiopathic epilepsy. The jerky gene encodes a 60 kDa protein resembling a number of DNA-binding proteins. Here, we show that the jerky gene is expressed in all tissues examined, including brain, liver, lung, spleen, testis, and ovary, and study an apparent paradox of how an allelic deletion of the ubiquitously expressed jerky gene can lead to hyperexcitability and seizures but not to other symptoms. We demonstrate that jerky has a dosage-sensitive function (haploinsufficiency) in brain and that this sensitivity to reduced jerky dosage could explain the occurrence of seizures in hemizygotes. However, jerky has a nondosage-sensitive function as well, because the total absence of jerky in homozygotes results in abnormalities of somatic and sexual development. A number of idiopathic epilepsies are dominantly inherited, such as benign familial neonatal convulsions, juvenile myoclonic epilepsy, as well as benign epilepsy with centrotemporal spikes, and the pathomechanism of these epilepsies may be based on haploinsufficiency in the brain.

Aging↗

Apparent digenic inheritance of Waardenburg syndrome type 2 (WS2) and autosomal recessive ocular albinism (AROA).

Waardenburg syndrome (WS) is a clinically and genetically heterogeneous disease accounting for >2% of the congenitally deaf population. It is characterized by deafness in association with pigmentary anomalies and various defects of neural crest-derived tissues. At least four types are recognized (WS1, WS2, WS3 and WS4) on the basis of clinical and genetic criteria. Two previously described families seemed to delineate a new subtype characterized by WS2 in conjunction with ocular albinism (OA). Since mutations in the MITF gene are responsible for some instances of WS2, we screened for mutations in one of the WS2-OA families and discovered a 1 bp deletion in exon 8 of MITF. OA previously has been associated with compound heterozygosity for a mutant TYR allele and the TYR(R402Q) allele, a functionally significant polymorphism that is associated with moderately reduced tyrosinase catalytic activity. In this family, all of the individuals with the OA phenotype are either homozygous or heterozygous for TYR(R402Q), and heterozyous for the 1 bp deletion in MITF This suggests that the WS2-OA phenotype may result from digenic interaction between a gene for a transcription factor (MITF) and a gene that it regulates (TYR).

Albinism, Ocular↗

Complementation of hypopigmentation in p-mutant (pink-eyed dilution) mouse melanocytes by normal human P cDNA, and defective complementation by OCA2 mutant sequences.

Mutations in the P gene of humans and the homologous p-locus of mice, respectively, result in the homologous disorders oculocutaneous albinism type 2 (OCA2) and pink-eyed dilution. Although clearly required for melanin biosynthesis, the specific function of the P gene product, a melanosomal transmembrane protein expressed in melanocytes of the skin, hair, and eyes, is not yet known. Here we describe lines of immortal melanocytes and melanoblasts from mice of the null genotype p(cp)/p(25H). These p-null melanocytes were severely hypopigmented, although they and the melanoblasts expressed mRNAs for a number of melanosomal proteins. Proliferation of the p-null melanoblasts was normal. Both diploid and immortal p-null melanocytes grew more slowly than wild-type melanocytes, however, and were unusually susceptible to the antibiotic G418; these abnormalities were corrected by culture in high concentrations of L-tyrosine. Transfection of the p-null melanocytes with full-length normal human P cDNA resulted in complementation of deficient melanin biosynthesis and hypopigmentation. In contrast, transfection with mutant human P cDNAs containing amino acid substitutions (A481T, V443I) found in patients with OCA2 resulted in minimal or partial correction, consistent with the corresponding pigmentation phenotypes in patients with these mutations. These results demonstrate the utility of this model system for distinguishing true OCA2 mutations from nonpathologic polymorphisms and for quantitating the effect of these mutations on P function.

Albinism, Oculocutaneous↗

Mutational analysis of copper binding by human tyrosinase.

Tyrosinase (EC 1.14.18.1) is a copper-containing enzyme that catalyzes several reactions in the biosynthesis of melanin pigments and is deficient in patients with type I oculocutaneous albinism (OCA1). Tyrosinase is thought to bind two copper ions, one at each of two conserved sequence motifs, termed CuA and CuB, but to date this has been directly proved only for the Neurospora and mushroom enzyme. Here, we demonstrate that mammalian tyrosinase directly binds copper, and that the CuA and CuB sites are both required for copper binding and for catalytic activity. We show that in human tyrosinase, copper binding by the CuB site is most likely coordinated by residues His363, His367, and His389, and that copper binding may be cooperative, with copper binding at one site facilitating copper binding by the other site. Furthermore, correct folding of the tyrosinase polypeptide appears to be necessary for copper binding, and a number of human OCA1 mutations disrupt copper binding and thus catalytic function of tyrosinase.

Conserved Sequence↗

Closed head injuries in children following the use of a sarong cradle.

INTRODUCTION: Sarong cradles are unique to South-East Asian culture. Their use can lead to injuries from falls, over-enthusiastic rocking and defective equipment. We present 19 children who attended the Accident and Emergency (A&E) Department of a general hospital and who sustained injuries while in a sarong cradle. All had closed head injuries. METHODS AND MATERIALS: The data was collected over a 9-month period from September 1992 to May 1993. All patients with a documented history of fall following the use of a sarong cradle, were recruited into the study. The adults accompanying the patients were interviewed with a structured questionnaire. The information was recorded by the doctor in attendance. RESULTS: The ages of the 19 patients ranged from 13 days to 29 months. There were 17 Chinese, 1 Malay and 1 Indian. The types of closed head injuries included minor head injury with no external signs of injury, scalp lacerations, scalp haematomas and severe head injury with an extradural haematoma. The majority (14) were discharged from the A&E Department with head injury advice, 4 were admitted to the General Neurosurgical ward and one, to the Neurosurgical Intensive Care Unit. There were no fatalities in this group. The accidents happened while the children were either sleeping (14), playing (4) or feeding (1). CONCLUSIONS: While most head injuries sustained in this manner are usually mild, there is a potential that such injuries may lead to more serious injuries. Care givers who use the sarong cradle should be aware of the dangers and exercise due care during use.

Accidental Falls↗

The alternatively spliced Kunitz protease inhibitor domain alters amyloid beta protein precursor processing and amyloid beta protein production in cultured cells.

The insoluble amyloid deposited extracellularly in the brains of patients with Alzheimer's disease (AD) is composed of amyloid beta protein, a approximately 4-kDa secreted protein that is derived from a set of large proteins collectively referred to as the amyloid beta protein precursor (betaAPP). During normal processing the betaAPP is cleaved by beta secretase, producing a large NH2-terminal secreted derivative (sAPPbeta) and a COOH-terminal fragment beginning at Abeta1, which is subsequently cleaved by gamma secretase releasing secreted Abeta. Most secreted Abeta is Abeta1-40, but approximately 10% of secreted Abeta is Abeta1-42. Alternative betaAPP cleavage by alpha secretase produces a slightly longer NH2-terminal secreted derivative (sAPPalpha) and a COOH-terminal fragment beginning at Abeta17, which is subsequently cleaved by gamma secretase releasing a approximately 3-kDa secreted form of Abeta (P3). Several of the betaAPP isoforms that are produced by alternative splicing contain a 56-amino acid Kunitz protease inhibitor (KPI) domain known to inhibit proteases such as trypsin and chymotrypsin. To determine whether the KPI domain influences the proteolytic cleavages that generate Abeta, we compared Abeta production in transfected cells expressing human KPI-containing betaAPP751 or KPI-free betaAPP695. We focused on Abetas ending at Abeta42 because these forms appear to be most relevant to AD. Using specific sandwich enzyme-linked immunosorbent assays, we analyzed full-length Abeta1-42 and total Abeta ending at Abeta42 (Abeta1-42 + P3(42)). In addition, we analyzed the large secreted derivatives produced by alpha secretase (sAPPalpha) and beta secretase (sAPPbeta). In mouse teratocarcinoma (P19) cells expressing betaAPP695 or betaAPP751, expression of the KPI-containing betaAPP751 resulted in the secretion of a lower percentage of P3(42) and sAPPalpha and a correspondingly higher percentage of Abeta1-42 and sAPPbeta. Similar results were obtained in human embryonic kidney (293) cells. These results indicate that expression of the KPI domain reduces alpha secretase cleavage so that less P3 and relatively more full-length Abeta are produced. Thus, in human brain and in animal models of AD, the amount of KPI-containing betaAPP produced may be an important factor influencing Abeta deposition.

Alternative Splicing↗

Human papillomavirus genotype as a predictor of persistence and development of high-grade lesions in women with minor cervical abnormalities.

Women referred for colposcopy with mild and moderate dyskaryosis and found to have only minor cervical abnormalities were screened for oncogenic human papilloma virus (HPV) types. The natural development of these abnormalities in 42 HPV-positive women was assessed by cytology and colposcopy at 6-month intervals for up to 2 years. As is the case with cancers and high-grade cervical intra-epithelial neoplasia (CIN), minor cervical abnormalities were frequently found to be associated with HPV16, -18, -31 and -33. Viral persistence and the development of high-grade lesions were found to be closely associated with HPV16; 56% of HPV16 isolates were persistent compared to 7% of other HPV types, and all 4 subsequent CIN 3 lesions were in women with persistent infection. A striking association of persistence with a variant of HPV16 having a base change at nucleotide 350 was observed. Ten of 12 women with this variant had persistent infection compared to only 1 of 16 women infected with the HPV16 prototype.

Adult↗

Susceptibility to human papillomavirus-associated cervical intra-epithelial neoplasia is determined by specific HLA DR-DQ alleles.

Human papillomaviruses (HPV) play a causative role in the aetiology of cervical intra-epithelial neoplasia (CIN) and cervical cancer. Human leukocyte antigens (HLA) are important in the regulation of immune response to foreign antigens. The role of genetic variation at the HLA class II loci (DR and DQ) in CIN (HPV 16, 18, 31 and 33 typed) was investigated by PCR DNA amplification and oligonucleotide probe typing of cervical smears from British Caucasian patients (n = 176) and controls (n = 416). The alleles of the DQB1*03, DRB1*04 and DRB1*11 loci were strongly associated with susceptibility to CIN. Specifically, the haplotypes DRB1*0401-DQB1*0301 and DRB1*1101-DQB1*0301 were significant and indicated susceptibility. The DQB1*03 locus was more contributory to this association than the DRB1 loci. A weak protective effect was shown for the haplotype DRB1*0101-DQB1*0501. Positive correlation was also observed for HPV-positive CIN, suggesting that specific HLA class II alleles may be important in determining the immune response to HPV antigens and the risk for CIN after HPV infection. Our results should help in the rational design of vaccines against HPV.

Alleles↗

Strength of porcelain fused to titanium beams.

The purposes of this study were to measure strengths of layered porcelain fused to titanium beams, determine failure modes, and investigate the porcelain-titanium interface. A three-point flexural test and formulas derived especially for this purpose were used. The strength of layered porcelain-ceramic beams was limited by the cohesive tensile or compressive strengths of the porcelain, not by the porcelain-titanium interfacial bond, namely, the porcelain failure occurred at lower loads than did failure of the porcelain-titanium interface. The porcelain-titanium bond strength was at least 26 MPa. Scanning electron microscopy and energy-dispersive x-ray spectroscopy demonstrated that the bond was limited by delamination of a thin titanium-titanium oxide interface. Theoretic curves that describe effects of relative layer and total thickness on the force-bearing capacity of model beams were plotted. These curves indicated that porcelain-titanium prostheses should be made as thick as is practical, but the relative thickness of the porcelain and titanium layers would be less important.

Analysis of Variance↗

Positional cloning of a gene for Hermansky-Pudlak syndrome, a disorder of cytoplasmic organelles.

Hermansky-Pudlak syndrome (HPS) is an often-fatal autosomal recessive disease in which albinism, bleeding, and lysosomal storage result from defects of diverse cytoplasmic organelles: melanosomes, platelet dense bodies, and lysosomes. HPS is the most common single-gene disorder in Puerto Rico, with an incidence of 1 in 1,800. We have identified the HPS gene by positional cloning, and found homozygous frameshifts in this gene in Puerto Rican, Swiss, Irish and Japanese HPS patients. The HPS polypeptide is a novel transmembrane protein that is likely to be a component of multiple cytoplasmic organelles and that is apparently crucial for their normal development and function. The different clinical phenotypes associated with the different HPS frameshifts we observed suggests that differentially truncated HPS polypeptides may have somewhat different consequences for subcellular function.

Albinism, Oculocutaneous↗

High levels of circulating beta-amyloid peptide do not cause cerebral beta-amyloidosis in transgenic mice.

We have established transgenic mice that constitutively overproduce the signal sequence and the 99-amino-acid carboxyl-terminal region of the human beta-amyloid precursor protein. The transgenic mice strongly expressed the transgene in multiple tissues under the control of a cytomegalovirus enhancer/chick beta-actin promoter. There were exceptionally high levels of beta-amyloid peptides in the plasma (approximately 17 times or more compared with the human plasma level). Although some transgenic mice from one founder line developed amyloidosis in the intestine, no neuropathology was found in transgenic mice up to age 29 months. Given the absence of cerebral beta-amyloidosis despite extremely high levels of circulating beta-amyloid peptides in the transgenic mice, the results suggest that local cerebral metabolism of beta-amyloid precursor protein may play a predominant role in cerebral beta-amyloidosis in transgenic mice. Such transgenic mice may be useful for the investigation of the etiology of the disease and for the establishment of therapeutic strategies.

Amyloid beta-Peptides↗

Human papillomavirus testing in primary cervical screening.

Several studies have examined the role of tests for human papillomavirus (HPV) in screening for cervical cancer but as yet the relevance is unclear. We looked at HPV testing for types 16, 18, 31, and 33 on material taken at the time of a cervical smear in 2009 eligible women having routine screening. Women with any degree of dyskaryosis or high levels of one of these HPV types were referred for colposcopy. 44% of the cervical intraepithelial neoplasia (CIN) lesions of grade 2/3 detected had negative cytology and were found only by HPV testing. A further 22% of the CIN 2/3 lesions were positive for HPV but showed only borderline or mild cytological changes. The positive predictive value of HPV testing was 42%, which was similar to that for moderate dyskaryosis. HPV types 16 and 31 were more sensitive and specific for CIN 2/3 than were types 18 or 33. However, 25% of the CIN 2/3 lesions were not detected by these four HPV tests. We suggest that HPV testing could usefully augment but not replace conventional cytology. These results should stimulate a much larger randomised trial to assess the impact of these improved CIN 2/3 detection rates on the subsequent incidence of invasive cancer.

Adult↗

Amyloid beta protein (A beta) in Alzheimer's disease brain. Biochemical and immunocytochemical analysis with antibodies specific for forms ending at A beta 40 or A beta 42(43).

Biochemical and immunocytochemical analyses were performed to evaluate the composition of the amyloid beta protein (A beta) deposited in the brains of patients with Alzheimer's disease (AD). To quantitate all A beta s present, cerebral cortex was homogenized in 70% formic acid, and the supernatant was analyzed by sandwich enzyme-linked immunoabsorbent assays specific for various forms of A beta. In 9 of 27 AD brains examined, there was minimal congophilic angiopathy and virtually all A beta (96%) ended at A beta 42(43). The other 18 AD brains contained increasing amounts of A beta ending at A beta 40. From this set, 6 brains with substantial congophilic angiopathy were separately analyzed. In these brains, the amount of A beta ending at A beta 42(43) was much the same as in brains with minimal congophilic angiopathy, but a large amount of A beta ending at A beta 40 (76% of total A beta) was also present. Immunocytochemical analysis with monoclonal antibodies selective for A beta s ending at A beta 42(43) or A beta 40 confirmed that, in brains with minimal congophilic angiopathy, virtually all A beta is A beta ending at A beta 42(43) and showed that this A beta is deposited in senile plaques of all types. In the remaining AD brains, A beta 42(43) was deposited in a similar fashion in plaques, but, in addition, widely varying amounts of A beta ending at A beta 40 were deposited, primarily in blood vessel walls, where some A beta ending at A beta 42(43) was also present. These observations indicate that A beta s ending at A beta 42(43), which are a minor component of the A beta in human cerebrospinal fluid and plasma, are critically important in AD where they deposit selectively in plaques of all kinds.

Alzheimer Disease↗