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1.
J Clin Invest ; 131(16)2021 08 16.
Article in English | MEDLINE | ID: mdl-34166231

ABSTRACT

BackgroundVRC01, a potent, broadly neutralizing monoclonal antibody, inhibits simian-HIV infection in animal models. The HVTN 104 study assessed the safety and pharmacokinetics of VRC01 in humans. We extend the clinical evaluation to determine intravenously infused VRC01 distribution and protective function at mucosal sites of HIV-1 entry.MethodsHealthy, HIV-1-uninfected men (n = 7) and women (n = 5) receiving VRC01 every 2 months provided mucosal and serum samples once, 4-13 days after infusion. Eleven male and 8 female HIV-seronegative volunteers provided untreated control samples. VRC01 levels were measured in serum, secretions, and tissue, and HIV-1 inhibition was determined in tissue explants.ResultsMedian VRC01 levels were quantifiable in serum (96.2 µg/mL or 1.3 pg/ng protein), rectal tissue (0.11 pg/ng protein), rectal secretions (0.13 pg/ng protein), vaginal tissue (0.1 pg/ng protein), and cervical secretions (0.44 pg/ng protein) from all recipients. VRC01/IgG ratios in male serum correlated with those in paired rectal tissue (r = 0.893, P = 0.012) and rectal secretions (r = 0.9643, P = 0.003). Ex vivo HIV-1Bal26 challenge infected 4 of 21 rectal explants from VRC01 recipients versus 20 of 22 from controls (P = 0.005); HIV-1Du422.1 infected 20 of 21 rectal explants from VRC01 recipients and 12 of 12 from controls (P = 0.639). HIV-1Bal26 infected 0 of 14 vaginal explants of VRC01 recipients compared with 23 of 28 control explants (P = 0.003).ConclusionIntravenous VRC01 distributes into the female genital and male rectal mucosa and retains anti-HIV-1 functionality, inhibiting a highly neutralization-sensitive but not a highly resistant HIV-1 strain in mucosal tissue. These findings lend insight into VRC01 mucosal infiltration and provide perspective on in vivo protective efficacy.FundingNational Institute of Allergy and Infectious Diseases and Bill & Melinda Gates Foundation.


Subject(s)
Antibodies, Monoclonal/administration & dosage , Broadly Neutralizing Antibodies/administration & dosage , HIV Antibodies/administration & dosage , HIV Infections/prevention & control , HIV-1/immunology , HIV-1/pathogenicity , Rectum/immunology , Vagina/immunology , Adult , Antibodies, Monoclonal/pharmacokinetics , Female , HIV Infections/immunology , HIV Infections/virology , Humans , In Vitro Techniques , Infusions, Intravenous , Male , Middle Aged , Mucous Membrane/immunology , Mucous Membrane/virology , Rectum/virology , Vagina/virology , Young Adult
2.
Biochem Biophys Res Commun ; 312(1): 91-6, 2003 Dec 05.
Article in English | MEDLINE | ID: mdl-14630024

ABSTRACT

The soluble calmodulin-sensitive isoform of adenylyl cyclase isolated from equine sperm is unique because it requires Mn(2+) rather than Mg(2+) for activity. To gain insight into the molecular action of metals on sperm adenylyl cyclase, the kinetics of Mn(2+) and ATP effect was examined. A biphasic response to increases in ATP concentration was observed when metal was held constant. When [Mn(2+)] exceeded [ATP], however, greatly enhanced enzyme activity was observed. The kinetic profiles were consistent with allosteric activation of adenylyl cyclase by Mn(2+). Linear transformation of the data yielded an apparent K(m) for Mn-ATP of 5.8 mM and calculated V(max) of 12 nM cyclic AMP formed/min/mg. Data analysis using calculated equilibrium concentrations of free and complexed reactants provided similar estimates of these kinetic parameters.


Subject(s)
Adenosine Triphosphate/chemistry , Adenylyl Cyclases/chemistry , Adenylyl Cyclases/metabolism , Manganese/chemistry , Models, Chemical , Models, Molecular , Spermatozoa/chemistry , Spermatozoa/enzymology , Animals , Coenzymes/chemistry , Computer Simulation , Enzyme Activation , Horses , Kinetics , Male , Structure-Activity Relationship , Substrate Specificity
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