All in the Fam­ily

by Elio

In Span­ish or Italian,"colmo" means that some­thing has truly reached the limit, the last straw. For endosym­bionts, this can be claimed by bac­te­ria that live not just in­side host cells, but within their mi­to­chon­dria. El colmo! This un­usual sym­bio­sis has been found in the cells of the ovaries of the Ixodes ticks that carry Lyme dis­ease. The mi­to­chon­dria of these cells are quite large and can rea­dily ac­com­mo­date their guest bac­te­ria. This find­ing is not en­tirely new. In the 1970's, en­dosym­bionts were report­ed re­sid­ing in mi­to­chon­dria, first of cil­i­ates and later of ticks. A re­cent pa­per re­ports the ge­nomic iden­ti­fi­ca­tion of an en­domi­to­chon­dr­ial bac­terium, which turns out to be­long to the Rick­ettsi­aceae...

TEM of 'Can­di­da­tus Midichlo­ria mito­chondrii' in­side a mi­to­chon­drion. Courte­sy of L. Sac­chi, Uni­ver­sity of Pavia, Italy.

This is a group of al­pha-pro­teobac­te­ria that in­cludes the agents of ty­phus and spot­ted fevers and is more dis­tantly al­lied to the Anaplas­mat­aceae that in­clude other in­sect en­dosym­bionts such as Wol­bachia. The name pro­posed for this bac­terium is "Can­di­da­tus Midichlo­ria mi­to­chon­drii". The mid­dle term is amus­ing – it refers to the 'midichlo­ri­ans' of Star Wars, mi­cro­scopic en­ti­ties that live within cells and com­mu­ni­cate with "the Force." No claim is made in this pa­per that these bac­te­ria are in touch with the Jedi. No mat­ter, these find­ings present us with a strange fam­ily re­la­tion­ship. Mi­to­chon­dria are be­lieved to be de­rived from rick­ettsiae, so this smacks of an in­ces­tu­ous re­la­tion­ship.

It gets even bet­ter. The bac­te­ria do not pen­e­trate the in­te­rior of the mi­to­chon­dria but are con­tent to re­side within their outer mem­brane and to de­velop in in­ter­mem­brane or periplas­mic space. There they mul­ti­ply at the ex­pense of the mi­to­chon­dr­ial ma­trix, as re­ported here. This is reminis­cent of the way the preda­tor bac­te­ria Bdellovib­rio at­tack their prey (see Tal­mu­dic Ques­tion #3 in this blog).

Mi­cro­graph of a nu­cleus packed with ri­ck­ettsiae.

Now for a con­fes­sion: I got so car­ried away by the intra­mi­tochondrial sym­biont story that I for­got that rick­ettsiae can also be found within the nu­clei of their host cells. In fact, I had seen this star­tling fact with my own eyes. Here is my story. In 1954, a fresh Ph.D., I had been drafted and sent to Wal­ter Reed Army In­sti­tute of Re­search, where I was to work un­der an em­i­nent rick­ettsi­ol­o­gist, Joe Sma­del. In those days, it was not en­tirely clear whether rick­ettsiae (and chlamy­dia, for that mat­ter) were bac­te­ria or viruses. There were even whis­pers that they might be an in­ter­me­di­ate group. Smadel was clearly tired of this kind of talk and pro­posed that I solve the prob­lem once and for all by ob­serv­ing rick­ettsiae in liv­ing in­fected cells and fol­low­ing in­di­vid­ual or­gan­isms to see if they di­vided by bi­nary fis­sion. They did. While I was snap­ping pic­tures every minute or two, hop­ing to see the rick­ettsiae do their things, I saw all sorts of in­ter­est­ing things. Among oth­ers, there was the amaz­ing sight of the rick­ettsiae mov­ing around the cy­to­plasm at con­sid­er­able speed (this was later ex­plained as be­ing due to the for­ma­tion of actin tails).

Just as strik­ing was the view of nu­clei that were filled with rick­ettsiae ar­rayed side by side (see photo above). The cells sur­vived this in­va­sion for at a few days and their nu­clei con­tin­ued to look healthy. Again, this was old stuff, but it was fun to see it in liv­ing cells. I con­clude that rick­ettsiae have a keen abil­ity to snoop in­side cell com­part­ments.

 

Ref­er­ence

Sassera D, Ben­i­nati T, Bandi C, Bouman EAP, Sac­chi L, Fabbi M, Lo N. 'Can­di­da­tus Midichlo­ria mi­to­chon­drii', an en­dosym­biont of the tick Ixodes rici­nus with a unique in­trami­to­chon­dr­ial lifestyle. Int J Syst Evol Mi­cro­biol. 2006 Nov;56(Pt 11):2535–2540. doi: 10.1099/ijs.0.64386–0. PMID: 17082386 (Ope­nAc­cess)

Note: Two later posts re­fer to this post:
An Up­date on Mi­to­chon­dria and Their In­vaders
All in the Fam­ily – An­other Up­date

 

 

 

 

Other Posts

Subscribe
Notify of
0 Comments
Oldest
Newest Most Voted