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101.
102.
Abid MR Schoots IG Spokes KC Wu SQ Mawhinney C Aird WC 《The Journal of biological chemistry》2004,279(42):44030-44038
103.
104.
Shay CM Carnethon MR Church TR Hankinson AL Chan C Jacobs DR Lewis CE Schreiner PJ Sternfeld B Sidney S 《Obesity (Silver Spring, Md.)》2011,19(11):2248-2253
Lower extremity fat mass (LEFM) has been shown to be favorably associated with glucose metabolism. However, it is not clear whether this relationship is similar across varying levels of obesity. We hypothesized that lower amounts of LEFM is associated with higher insulin resistance (IR) and this association may vary according to weight status. Participants with available measures were examined from the Coronary Artery Risk Development in Young Adults study (CARDIA), a multi-center longitudinal study of the etiology of atherosclerosis in black and white men and women aged 38-50 years old in 2005-2006 (n = 1,579). The homeostasis model assessment of IR (HOMA(IR)) was calculated to estimate IR, regional adiposity was measured using dual energy X-ray absorptiometry (DXA), and weight status was defined according to BMI categories. Obese and overweight participants exhibited higher IR, total fat mass (FM), trunk FM (TFM), and LEFM compared to normal weight participants. After controlling for age, height, race, study center, education, smoking, and cardiorespiratory fitness (CRF), greater LEFM was significantly associated with higher IR only in normal weight men and women. Further adjustment for TFM revealed that lower LEFM was significantly associated with higher IR in overweight and obese men and women and the positive association in normal weight individuals was attenuated. These results suggest that excess adiposity in the lower extremities may attenuate the metabolic risk observed at a given level of abdominal adiposity in overweight and obese individuals. Weight status presents additional complexity since the metabolic influence of adipose tissue may not be homogenous across anatomic regions or level of obesity. 相似文献
105.
106.
Liu P Overman RG Yates NL Alam SM Vandergrift N Chen Y Graw F Freel SA Kappes JC Ochsenbauer C Montefiori DC Gao F Perelson AS Cohen MS Haynes BF Tomaras GD 《Journal of virology》2011,85(21):11196-11207
Understanding the interactions between human immunodeficiency virus type 1 (HIV-1) virions and antibodies (Ab) produced during acute HIV-1 infection (AHI) is critical for defining antibody antiviral capabilities. Antibodies that bind virions may prevent transmission by neutralization of virus or mechanically prevent HIV-1 migration through mucosal layers. In this study, we quantified circulating HIV-1 virion-immune complexes (ICs), present in approximately 90% of AHI subjects, and compared the levels and antibody specificity to those in chronic infection. Circulating HIV-1 virions coated with IgG (immune complexes) were in significantly lower levels relative to the viral load in acute infection than in chronic HIV-1 infection. The specificities of the antibodies in the immune complexes differed between acute and chronic infection (anti-gp41 Ab in acute infection and anti-gp120 in chronic infection), potentially suggesting different roles in immunopathogenesis for complexes arising at different stages of infection. We also determined the ability of circulating IgG from AHI to bind infectious versus noninfectious virions. Similar to a nonneutralizing anti-gp41 monoclonal antibody (MAb), purified plasma IgG from acute HIV-1 subjects bound both infectious and noninfectious virions. This was in contrast to the neutralizing antibody 2G12 MAb that bound predominantly infectious virions. Moreover, the initial antibody response captured acute HIV-1 virions without selection for different HIV-1 envelope sequences. In total, this study demonstrates that the composition of immune complexes are dynamic over the course of HIV-1 infection and are comprised initially of antibodies that nonselectively opsonize both infectious and noninfectious virions, likely contributing to the lack of efficacy of the antibody response during acute infection. 相似文献
107.
BACKGROUND: Inflammatory myofibroblastic tumors (IMTs) can vary from benign pseudosarcomatous tumors to low grade sarcomas. To date, fine needle aspiration (FNA) findings of lung IMTs, especially in the aggressive form, have not been fully described. Here we present FNA biopsy findings in conjunction with immunohistochemical studies in a case of primary and recurrent pulmonary IMT. CASE: A 22-year-old man first presented with a left lung mass and 4.5 years later with a recurrent mass. Preoperative computed tomography-guided FNA was performed on both tumors. FNA cytologic smears of both specimens consisted of scant, distorted spindle cells suggestive of a spindle cell lesion but were insufficient for further classification. Needle core biopsies as well as touch imprints were performed during the FNA procedures. The imprints revealed abundant, well-preserved spindle cells with mild to moderate atypia and intermixed lymphocytes and plasma cells. The spindle cells in both specimens were immunoreactive for vimentin and smooth muscle actin and were negative for pancytokeratin, desmin, CD34 and c-kit. Thirty percent of the tumor cells were positive for p53. The findings were compatible with those of IMT. Histologic examination of the surgically resected initial and recurrent masses confirmed the diagnosis of lMT. CONCLUSION: The cytologic findings of pulmonary IMT in FNA specimens are suggestive of, although not specific for, IMT. Immunohistochemical studies can assist in the diagnosis by excluding other spindle cell lesions. Cytologic atypia and p53 immunoreactivity may be indicators of aggressive IMTs. 相似文献
108.
Groome JR Alexander HM Fujimoto E Sherry M Petty D 《Cellular and molecular neurobiology》2007,27(1):87-106
Summary 1. Mutations in the S4 segment of domain III in the voltage gated skeletal muscle sodium channel hNaV1.4 were constructed to test the roles of each charged residue in deactivation gating. Mutations comprised charge reversals
at K1-R6, charge neutralization, and substitution at R4 and R5.
2. Charge-reversing mutations at R4 and R5 produced the greatest alteration of activation parameters compared to hNaV1.4. Effects included depolarization of the conductance/voltage (g/V) curve, decreased valence and slowing of kinetics.
3. Reversal of charge at R2 to R4 hyperpolarized, and reversal at R5 or R6 depolarized the h
∞ curve. Most DIIIS4 mutations slowed inactivation from the open state. R4E slowed closed state fast inactivation and R5E inhibited
its completion.
4. Deactivation from the open and/or inactivated state was prolonged in mutations reversing charge at R2 to R4 but accelerated
by reversal of charge at R5 or R6. Effects were most pronounced at central charges R4 and R5.
5. Charge and structure each contribute to effects of mutations at R4 and R5 on channel gating. Effects of mutations on activation
and deactivation at R4 and, to a lesser extent R5, were primarily owing to charge alteration, whereas effects on fast inactivation
were charge independent. 相似文献
109.
Giardia lamblia, an intestinal pathogen of mammals, including humans, is a significant cause of diarrheal disease around the world. Additionally, the parasite is found on a lineage which separated early from the main branch in eukaryotic evolution. The extent of genetic diversity among G. lamblia isolates is insufficiently understood, but this knowledge is a prerequisite to better understand the role of parasite variation in disease etiology and to examine the evolution of mechanisms of genetic exchange among eukaryotes. Intraisolate genetic variation in G. lamblia has never been estimated, and previous studies on interisolate genetic variation have included a limited sample of loci. Here we report a population genetics study of intra- and interisolate genetic diversity based on six coding and four noncoding regions from nine G. lamblia isolates. Our results indicate exceedingly low levels of genetic variation in two out of three G. lamblia groups that infect humans; this variation is sufficient to allow identification of isolate-specific markers. Low genetic diversity at both coding and noncoding regions, with an overall bias towards synonymous substitutions, was discovered. Surprisingly, we found a dichotomous haplotype structure in the third, more variable G. lamblia group, represented by a haplotype shared with one of the homogenous groups and an additional group-specific haplotype. We propose that the distinct patterns of genetic-variation distribution among lineages are a consequence of the presence of genetic exchange. More broadly, our findings have implications for the regulation of gene expression, as well as the mode of reproduction in the parasite. 相似文献
110.
CK2alpha is the catalytic subunit of protein kinase CK2 and a member of the CMGC family of eukaryotic protein kinases like the cyclin-dependent kinases, the MAP kinases and glycogen-synthase kinase 3. We present here a 1.6 A resolution crystal structure of a fully active C-terminal deletion mutant of human CK2alpha liganded by two sulfate ions, and we compare this structure systematically with representative structures of related CMGC kinases. The two sulfate anions occupy binding pockets at the activation segment and provide the structural basis of the acidic consensus sequence S/T-D/E-X-D/E that governs substrate recognition by CK2. The anion binding sites are conserved among those CMGC kinases. In most cases they are neutralized by phosphorylation of a neighbouring threonine or tyrosine side-chain, which triggers conformational changes for regulatory purposes. CK2alpha, however, lacks both phosphorylation sites at the activation segment and structural plasticity. Here the anion binding sites are functionally changed from regulation to substrate recognition. These findings underline the exceptional role of CK2alpha as a constitutively active enzyme within a family of strictly controlled protein kinases. 相似文献