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PubMed · 15652047

Chickenpox.

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George Swingler. 2004. Chickenpox.. https://pubmed.ncbi.nlm.nih.gov/15652047/

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Kinetic evidence for interaction of human immunodeficiency virus type 1 reverse transcriptase with the 3'-OH of the incoming dTTP substrate.

Two previously identified human immunodeficiency virus type 1 (HIV-1) reverse transcriptase (RT) mutants, Q151N and V148I, are known to have reduced dNTP binding affinity but possess wild-type chemical catalysis rates. Structural modeling based on the crystal structure of the HIV-1 RT ternary complex with dTTP proposes that Q151N loses the interaction with the 3'-OH of the incoming dTTP and that V148I disrupts positioning of Q151 for this interaction. On the basis of this, we predicted that while wild-type (WT) HIV-1 RT would have decreased binding affinity to dTTP analogues lacking 3'-OH, compared to dTTP, the Q151N and V148I RT mutants should have decreased but similar affinity to both dTTP and dTTP analogues. Pre-steady-state kinetics on WT RT showed 14- and 53-fold higher K(d) values for the 3'-OH lacking ddTTP and acyTTP, compared to dTTP. In contrast, the Q151N and V148I mutants, which were predicted to have lost H-bonding interaction with the 3'-OH of dTTP, showed higher but similar K(d) values for dTTP, ddTTP, and acyTTP. Interestingly, the Q151N and V148I RTs bound to AZTTP approximately 12 and 18 times more tightly than to dTTP, respectively. Our structure modeling suggests that these RT mutants can interact with the azido moiety of AZTTP, which is 1.4 A longer than the 3'-OH of dTTP. The kinetic data presented in this report demonstrate the functional role of the Q151 residue in HIV-1 RT interaction with dTTP and its analogues containing chemical modifications at the 3'-C of the sugar moiety.

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[Herpetic neonatal hepatitis].

Herpes simplex virus (HSV) infection can affect various organs-systems in the neonatal period. Herpetic hepatitis was seldom reported in the literature. We report on 2 cases. Firstly, a 16 day-old newborn infant was admitted because of haemorrhagic syndrome and shock. Biological assessment showed a severe hepatic insufficiency. Antibiotic and aciclovir therapy was started as HSV infection was suspected. Five days later, the herpetic attack was confirmed by polymerase chain reaction (PCR) in blood and cerebrospinal fluid (CSF). The genotye of the virus in the CSF was HSV1. Treatment included aciclovir for 21 days intravenously and 2 months orally. At 10 months, the clinical and biological examinations were normal. Secondly, a 4 day-old newborn was hospitalised because of fever and polypnea. Pulmonary X rays showed heterogeneous opacities of the right base. Serum C reactive protein was 30 mg/l. Antibiotic therapy was started. Two days later, the fever persisted while a severe hepatic insufficiency developed. The diagnosis of herpetic hepatitis was evoked and the child was given aciclovir. Forty-eight hours later, the PCR confirmed a HSV in blood, while viral culture of a mouth swab found HSV 2. Evolution was favourable after 21 days of specific and symptomatic treatment. Aciclovir treatment was continued orally for six months. Herpetic hepatitis is rare in the neonatal period. Diagnosis must be evoked early when facing severe neonatal hepatic insufficiency. Provided specific treatment, prognosis is good.

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