Scientists have an emerging interest in lectins, naturally occurring chemicals in plants, because of their ability to halt the chain of reaction that leads to a variety of infections.

Now, researchers from the University of Michigan say they have found a potent inhibitor of HIV, derived from  the lectin found in bananas that may open the door to new treatments to prevent sexual transmission of HIV.

In laboratory tests, BanLec, the lectin found in bananas, was as potent as two current anti-HIV drugs, T-20 and maraviroc, currently in clinical use. Based on the findings published in the Journal of Biological Chemistry, BanLec may become a less expensive new component of applied vaginal microbicides.



This is a 3-D structure of BanLec, a chemical isolated from bananas identified as a potent new inhibitor of HIV infection.

(Photo Credit: University of Michigan Medical School)


Lectins are sugar-binding proteins. They can identify foreign invaders, like a virus, and attach themselves to the pathogen. The U-M team discovered BanLec can inhibit HIV infection by binding to the sugar-rich HIV-1 envelope protein, gp120, and blocking its entry to the body.

Yet therapies using BanLec could be cheaper to create than current anti-retroviral medications which use synthetically produced components, plus BanLec may provide a wider range of protection, researchers say.

"The problem with some HIV drugs is that the virus can mutate and become resistant, but that's much harder to do in the presence of lectins," says lead author Michael D. Swanson, a
doctoral student in the graduate program in immunology at the University of Michigan Medical School.

"Lectins can bind to the sugars found on different spots of the HIV-1 envelope, and presumably
it will take multiple mutations for the virus to get around them," he says.

Swanson is developing a process to molecularly alter BanLec to enhance its potential clinical utility. Clinical use is considered years away but researchers believe it could be used alone or
with other anti-HIV drugs as a vaginal microbicide that prevents HIV infection.

Authors say even modest success could save millions of lives. Other investigators have estimated that 20 percent coverage with a microbicide that is only 60 percent effective against HIV may prevent up to 2.5 million HIV infections in three years.

New ways of stopping the spread of the HIV are vitally needed. The rate of new infections of HIV is outpacing the rate of new individuals getting anti-retroviral drugs by 2.5 to1, and at present it appears an effective vaccine is years away.

"HIV is still rampant in the U.S. and the explosion in poorer countries continues to be a bad problem because of tremendous human suffering and the cost of treating it," says study senior author David Marvovitz, M.D., professor of internal medicine at the U-M Medical School.

Although condom use is quite effective, condoms are most successful in preventing infection if used consistently and correctly, which is often not the case.

"That's particularly true in developing countries where women have little control over sexual encounters so development of a long-lasting, self-applied microbicide is very attractive," Markovitz says.




Citation: Swanson et al., 'A Lectin Isolated from Bananas Is a Potent Inhibitor of HIV Replication' J. Biol. Chem., 2010, 28,5 8646-8655; doi:10.1074/jbc.M109.034926