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Shijie Xu

Publications and source records attributed to Shijie Xu.

6 recordsLinked to original sources

Quantum transport through C48N12 based atomic devices.

We report numerical calculations on the quantum transport through C48N12 based devices from first principles. We find that the transport properties are very sensitive to orientations of the molecules to the electrode. Different orientations can give rise to semiconducting to metallic behaviors. Our results show that the charge transfer which can be tuned by the gate voltage plays an important role in determining the transport properties. By varying the gate voltages, the transport properties can be changed from semiconducting to metallic behaviors and thereby magnifying effect can be achieved.

Journal Article↗

Fine mapping and identification of a candidate gene SSH1 in disseminated superficial actinic porokeratosis.

Disseminated superficial actinic porokeratosis (DSAP) is an uncommon autosomal dominant chronic keratinization disorder, characterized by multiple superficial keratotic lesions surrounded by a slightly raised keratotic border. Thus far, although two loci for DSAP have been identified, the genetic basis and pathogenesis of this disorder have not been elucidated yet. In this study, we performed a genome-wide linkage analysis in three Chinese affected families and localized the gene in an 8.0 cM interval defined by D12S330 and D12S354 on chromosome 12. Upon screening 30 candidate genes, we identified a missense mutation, p.Ser63Asn in SSH1 in one family, a frameshift mutation, p.Ser19CysfsX24 in an alternative variant (isoform f) of SSH1 in another family, and a frameshift mutation, p.Pro27ProfsX54 in the same alternative variant in one non-familial case with DSAP. SSH1 encodes a phosphatase that plays a pivotal role in actin dynamics. Our data suggested that cytoskeleton disorganization in epidermal cells is likely associated with the pathogenesis of DSAP.

Age of Onset↗

Divergence of the genes on human chromosome 21 between human and other hominoids and variation of substitution rates among transcription units.

The study of genomic divergence between humans and primates may provide insight into the origins of human beings and the genetic basis of unique human traits and diseases. Chromosome 21 is the smallest chromosome in the human genome, and some of its regions have been implicated in mental retardation and other diseases. In this study, we sequenced the coding and regulatory regions of 127 known genes on human chromosome 21 in DNA samples from human and chimpanzees and a part of the corresponding genes from orangutan, gorilla, and macaque. Overall, 3,003 nucleotide differences between human and chimpanzee were identified over approximately 400 kb. The differences in coding, promoter, and exon-intron junction regions were 0.51 +/- 0.02%, 0.88 +/- 0.03%, and 0.85 +/- 0.02%, respectively, much lower than the previously reported 1.23% in genomic regions, which suggests the presence of purifying selection. Significant variation in substitution rate among genes was observed by comparing the divergence between human and chimpanzee. Furthermore, by implementing a bioinformatics-based approach, we showed that the identification of genetic variants specific to the human lineage might lead to an understanding of the mechanisms that are attributable to the phenotypes that unique to humans, by changing the structure and/or dosage of the proteins expressed. A phylogenetic analysis unambiguously confirms the conclusion that chimpanzees were our closest relatives to the exclusion of other primates and the relative divergence of the Homo-Pan and that of (Homo-Pan)-Gorilla are 4.93 million years and 7.26 million years, respectively.

3' Untranslated Regions↗

Genome-wide scan of Graves' disease: evidence for linkage on chromosome 5q31 in Chinese Han pedigrees.

Graves' disease (GD), which is a common organ-specific autoimmune disorder, is multifactorial and develops in genetically susceptible individuals. Despite many studies of candidate genes, only associations with human leukocyte antigen and cytotoxic T lymphocyte antigen 4 have been generally detected, and the number of susceptibility genes remains unknown. To identify chromosomal regions contributing to GD, we conducted a genome-wide scan on 322 individuals from 54 Chinese Han multiplex GD pedigrees. Parametric linkage analysis revealed the strongest evidence for linkage at D5S436 on chromosome 5q31, with a maximum two-point LOD score of 2.8 and a maximum multipoint LOD score of 2.3. To further assess the significance of this suggestive finding, we typed four additional markers around D5S436 in this chromosome region, and a maximum two-point LOD score of 4.31 and a maximum multipoint LOD score of 4.12 were obtained for marker D5S2090 (with heterogeneity, = 0.38). Nonparametric multipoint analysis also showed significant excess allele sharing, with a P value as low as 0.001, at the same locus. Our findings provide evidence for a susceptibility locus for GD on chromosome 5q31 and support the existence of genetic heterogeneity in GD.

Adolescent↗

[Mapping studies of type 2 diabetes mellitus gene in one family].

OBJECTIVE: To disclose the molecular genetic mechanism of type 2 diabetes mellitus and to determine chromosomal location of type 2 diabetes mellitus gene. METHODS: Genome-wide screening and genotyping were conducted in a family of type 2 diabetes mellitus, and linkage analysis by LINKAGE and GENEHUNTER package was used to determine the potential chromosomal location of the family of type 2 diabetes mellitus gene. RESULTS: Evidence of linkage was found at the long arm of chromosome 2. The maximum Lod score is 1.80 and non-parameter Lod score is 5.06. CONCLUSION: The type 2 diabetes mellitus gene of the family is located at 2q.

Adult↗

[The study of DNA damage of peripheral lymphocytes in the nurses occupationally exposed to anticancer drugs].

OBJECTIVE: To detect the DNA damage of the nurses occupationally exposed to anticancer drugs and to assess the exposure level using Comet assay. METHODS: Sixteen nurses occupationally exposed to anticancer drugs were selected as exposure group, the average exposure period was 5.6 years, and the average exposure dose was to prepare 7.8 portions of anticancer drugs daily. Meanwhile, sixteen nurse students were selected as control group. The DNA migration of the peripheral lymphocytes of both groups was detected using comet assay. RESULTS: The comet length was 46.27 microns in exposure group, which was significantly higher than that of control group (26.78 microns, P < 0.01). Also the percentage of long tailed nucleus (LTN) of exposure group was 64.83%, which was significantly higher than that of control group (4.87%, P < 0.01). CONCLUSIONS: There was DNA damage in the nurses occupationally exposed to antineoplastic drugs.

Antineoplastic Agents↗